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5. ¹®Á¦Æ²°ú ¹æ¹ý·ÐÀû µµ±¸·Î¼­ ¿Ü±¹À̷аú ¸Æ¶ôÀû °³³äÀÇ »ý¼º
Âü°í¹®Çå


2. ³í¹®¾²±â¿¡ ´ëÇÑ ºñÆÇÀÇ ÀïÁ¡
3. ¹®È­¿¬±¸ ³í¹®¾²±âÀÇ ÀνķÐÀû ±«¸®
4. °¡´ÉÇÑ ³í¹®¾²±âÀÇ ¸ð»ö
5. ¿¡Çʷα×
Âü°í¹®Çå


2. ¿¬±¸ÀÇ ¸Æ¶ô: Æä¹Ì´ÏÁò À̷аú ÀνķÐÀÇ ÁöÇü ±×¸®±â
3. ¿©¼ºÁÖÀÇ/Á¨´õ ¿¬±¸ »ý»êÀÇ ¸Æ¶ô°ú ¿¬±¸¹æ¹ý
4. ¾ð·ÐÇп¡¼­ ¿©¼ºÁÖÀÇ/Á¨´õ ¿¬±¸ »ý»ê °æÇâ : ¿¬±¸¿µ¿ª, ¿¬±¸´ë»ó, ¿¬±¸¹æ¹ý, ¿¬±¸ÁÖÁ¦
5. ¿©¼ºÁÖÀÇ¿Í ¹®È­ÀÌ·ÐÀÇ Á¢Á¡
6. ¡®¿©¼ºÁÖÀÇ °æÇè·Ð¡¯ ¿¬±¸ÀÇ °¡´É¼º°ú ÇѰè
7. °á·Ð : ¿©¼ºÁÖÀÇ ÀÌ·ÐÈ­¿Í Á¤Ä¡Àû ½ÇõÀÇ °úÁ¦
Âü°í¹®Çå


2. ºÎ¸£µð¿Ü ¹ø¿ªÀÇ ÇØºÎ : ¡®¼ºÂûÀû »çȸÇС¯¿¡ °üÇÑ »çȸÇÐÀû ¼ºÂû
3. ºÎ¸£µð¿Ü ±¹¿ªº» ÃâÆÇÀÇ Àü¹ÝÀû °æÇâ
4. ºÎ¸£µð¿Ü ¹ø¿ª, ¼ö¿ëÀÇ ÁöÀû¡¤Á¦µµÀû ¸Æ¶ô
5. ºÎ¸£µð¿Ü ¹ø¿ªÀÚÀÇ À§Ä¡¿Í ¡®Á¦½ÃÀü·«¡¯
6. ºÎ¸£µð¿Ü ÀúÀÛ ¹ø¿ª¡¤¼ö¿ë»óÀÇ ¡®±¼Àý¡¯
7. ³ª°¡¸ç : ¿Ü±¹ ÀúÀÛÀÇ ¡®¿Å°Ü ¾²±â¡¯, ¡®´Ù½Ã ¾²±â¡¯, ¡®ÀÌ¾î ¾²±â¡¯
Âü°í¹®Çå




1. ½Å»ç°í¿Í ±× »Ñ¸®
2. ¼Ò·Ã üÁ¦ÀÇ À§±â
3. °í¸£¹ÙÃÊÇÁÀÇ µîÀå°ú ³ÃÀüÀÇ Á¾¾ð
°á·Ð
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Abstract





1. 80³â´ë ºÏÇÑÀÇ °³Çõ¡¤°³¹æ Àνİú »çȸÁÖÀÇ '¿ÏÀü½Â¸®' Å×Á¦
2. ±âº»ÇÕÀǼ­ Á¤±¹: ÀÚÀ²¼º °úÀ×ÀÇ ´ë¿Ü¡¤´ë³²Á¤Ã¥°ú ³²¹æÁ¤Ã¥ÀÇ ÁÂÀý
°á·Ð: ÀÚÀ²¼º ÇÔÁ¤
ÁÖ
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1. ºÏ¹æÁ¤Ã¥°ú ´ëºÏÁ¤Ã¥ÀÇ °ü°è: ½ÇÆÐ¿Í ¼º°øÀÇ ÀÌÀ¯
2. ºÏ¹æÁ¤Ã¥: Çѱ¹ ¿Ü±³ÀÇ ÀÚÀ²¼º
3. ³²ºÏ±âº»ÇÕÀǼ­´Â ¿Ö ÀÌÇàµÇÁö ¸øÇßÀ»±î?
°á·Ð: ºÏ¹æÁ¤Ã¥ÀÇ ±³ÈÆ
ÁÖ
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1. Å»³ÃÀüÀÇ »õ·Î¿î ³²ºÏ°ü°è ¸ð»ö
2. ³²ºÏ°íÀ§±Þȸ´ã°ú ¾çÃøÀÇ Çù»óÀü·«
3. ³²ºÏ±âº»ÇÕÀǼ­ÀÇ ¼º°Ý°ú ÀÇÀÇ
4. 6¡¤15³²ºÏ°øµ¿¼±¾ð°ú È­ÇØ¡¤Çù·ÂÀÇ ½Çõ
´ç¸é °úÁ¦: '³²ºÏ¿¬ÇÕ'°ú '»ç½Ç»óÀÇ ÅëÀÏ »óȲ' ½ÇÇö


1. '¾Èö¼ö Çö»ó'¿¡ÀÇ ¹ÝÀÀ, ¾ç»ó°ú ÃßÀÌ
2. 10¡¤26 À硤º¸±È¼±°ÅÀÇ ÀǹÌ: 'Áö¹æÀÇ ÀçÁ¤Ä¡È­' °úÁ¦
3. '¾ß±Ç ÅëÇÕÁ¤´ç'ÀÇ ±âº» ¹æÇâ: '¹ÎÁÖ´ç ÇØÃ¼'¿Í 'ºñ ¹ÎÁÖ´ç ÅëÇÕ'ÀÇ °¡´É¼º
4. ÅëÇÕÁ¤´ç ÃßÁøÀÇ Çʼö ÀüÁ¦¿Í ±× È¿°ú: ¼±°Å¹ý °³Á¤°ú 'Áøº¸Á¤Ä¡ÀÇ Çö´ëÈ­'
³ª°¡¸ç: ÇϳªÀÇ ½Ã¼±, ±× ¼Ò½ÇÁ¡
ÁÖ


2. "ÀÌÁ¦ ³¡³»¾ß ÇÏÁö ¾Ê°Ú½À´Ï±î?"
Èıâ
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2. 3¡¤11 Á÷ÀüÀÇ ÈÄÄí½Ã¸¶
3. ÀÚµ¿ÀûÀ̸ç ÀÚ¹ßÀûÀÎ º¹Á¾ÀÇ Çü¼º
ÁÖ
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1. º£ÀÌ¡ ÄÁ¼¾¼­½º¿Í Áß±¹¸ðµ¨·ÐÀÇ Àü°³
2. Áß±¹¸ðµ¨·ÐÀ» ÅëÇÑ Áß±¹¹®Á¦ÀÇ ÀçÀνÄ
3. 'ÃæÄª¸ðµ¨'
±ÛÀ» ¸¶Ä¡¸ç
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1. ¼­±¸°¡ Àü¸ÁÇÏ´Â Áß±¹ÀÇ ¹Ì·¡, ±àÁ¤·Ð°ú ºÎÁ¤·Ð °£ÀÇ °ø¹æ
2. Áß±¹ÀÇ ¼ºÀå¸ðµ¨, Áö¼Ó°¡´É·Ð°ú ºØ±«ÇÊ¿¬·Ð »çÀÌ¿¡¼­
3. Áß±¹ °æÁ¦ÀÇ À§±â¿¡ ´ëÇÑ »óÀÌÇÑ Áø´Ü°ú ÇØ¹ý
³ª°¡¸ç: Áß±¹ ÀνĻóÀÇ Á¦¾à ¿ä¼Ò¸¦ ³Ñ±â À§ÇÏ¿©
ÁÖ


1. ÅëÀϺñ¿ëÀÇ °³³ä°ú ±âÁ¸ ³íÀÇ¿¡ ´ëÇÑ ºñÆÇÀû °íÂû
2. ÅëÀϺñ¿ë ³íÀÇ¿¡ ´ëÇÑ ¹ß»óÀÇ Àüȯ
3. 'ÀüȯÀÇ °è°î' È¿°ú¿Í ¹Ì·¡ ÁöÇâÀû ÅëÀÏ
°á·Ð: °øÁ¸¡¤°ø¿µÀÇ °¡Ä¡·ÎºÎÅÍ
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1. Å»¹ÎÁ·ÁÖÀÇÀû ÀÚÀ¯½ÃÀåÁÖÀÇ¿Í ÀÏÁ¦ÇÏ '±Ù´ëÀû °æÁ¦¼ºÀå'·Ð
2. ÀÏÁ¦ÇÏ '¹®¸í»çÀû À¯»ê'ÀÇ Å»½Ä¹ÎÁö ¿¬¼Ó ¹®Á¦: ´ëÇѹα¹ '°Ç±¹'ÀÇ ±âÃÊ À̳äÀº ÀÚÀ¯½ÃÀå°æÁ¦´Ù?
3. ÀÏÁ¦ ¸» Àü½Ãµ¿¿øÃ¼Á¦: Å»½Ä¹ÎÁö °³¹ß±¹°¡ÀÇ ½Ä¹ÎÁöÀû ±â¿ø?
4. °æÁ¦°³¹ß°èȹ°ú °³¹ßÁ¤Ã¥
¸ÎÀ½¸»
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1. »õ¸¶À»¿îµ¿¿¡ µ¿¿øµÈ ³óÃÌ ÁøÈ­»ç¾÷
2. ³óÃÌ ÀüÈ­»ç¾÷ÀÇ Àå¾Ö¿Í ÇØ°á
3. Àü±â·Î ¹Ù²ï ³óÃÌ»ýȰ
°á·Ð
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ÃÑ·ÂÀü, º¯Çõ, ±×¸®°í µ¿¾Æ½Ã¾Æ
º¯Çõ·ÐÀÇ °èº¸ÇÐ: Á¦±¹ÀÇ °ø°£¼º
Á¦±¹ÀÇ '¿ÜºÎ'¿Í '³»ºÎ': Áß±¹°ú ½Ä¹ÎÁöÁ¶¼±ÀÇ ¹®Á¦
ÁÖüÀÇ Á¤Ä¡ÇÐ
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»õ·Î¿î ³ëµ¿ÀÚµéÀÇ °ø»êÁÖÀÇ







2. ´Ù¹®È­ÁÖÀÇ ³íÀÇ´Â ¾î¶»°Ô ½ÃÀ۵Ǿú³ª?
3. ´Ù¹®È­ »óȲ¿¡ ´ëóÇÏ´Â ¹æ½ÄÀº ¾î¶°ÇÑ °ÍµéÀÌ Àִ°¡?
4. ´Ù¹®È­ÁÖÀÇÀÇÀÇ ¹®Á¦´Â ¹«¾ùÀΰ¡?
5. ¾î¶² ´Ù¹®È­ »çȸ¸¦ ¿øÇϴ°¡?
6. ºñÆÇÀû ´Ù¹®È­ÁÖÀǸ¦ ÇâÇÏ¿©


2. Çѱ¹»çȸÀÇ ´Ù¹®È­ ´ã·Ð°ú ÀÌÁֳ뵿ÀÚÀÇ ¼Ò¿Ü
3. ¾î¶² ´Ù¹®È­»çȸÀΰ¡? : ÀÌÁÖ¹ÎÀÇ ±Ç¸®¿¡ ´ëÇÑ ¼ºÂû
4. ´Ù¹®È­»çȸÀÇ ¹®È­´Ù¾ç¼º


2. ÀÎÁ¤ÀÇ Á¤Ä¡¿Í ÀÎÁ¤ÅõÀï, ±×¸®°í µµ½ÃºÀ±â
3. ´Ù¹®È­ÁÖÀÇÀÇ ¡®¹®È­¡¯ °³³ä ºñÆÇ, ±×¸®°í °­Á¦°áÈ¥ ¹®Á¦
4. ´Ù¹®È­ÁÖÀǸ¦ ³Ñ¾î¼­


°è¸ù±â(1905~1910)¿¡ ½Ïư ´ÜÀϹÎÁ· °ü³äÀÇ ¸Í¾Æ
ÇØ¹æ ÀÌÈÄ ´ÜÀϹÎÁ· °ü³äÀÇ ½ÅÈ­È­
´ÜÀϹÎÁ·ÀÇ ½ÅÈ­¸¦ ³Ñ¾î¼­¾ßÇÏ´Â ÀÌÀ¯
´Ù½Ã µ¹¾Æ¿Â ¿­°­ÀïÆÐÀÇ ½Ã´ë Â÷¼±Ã¥À¸·Î¼­ÀÇ ¿­¸° ¹ÎÁ·ÁÖÀÇ



¹«¾ùÀÌ Á¤ÀÇÀΰ¡?
¹é±â ÅõÇ×? ¿Á¼â ÅõÀï? Á¶Á÷Àû ÈÄÅð?
¡®Á¤¸®Çذí?ºñÁ¤±ÔÁ÷ ¾ø´Â ¼¼»ó¡¯ ÀÌ°Ô ¸Â³ª?


2. ´ë¾È±³À° ¹Ù¶÷
3. Ã¥¹«¼º ¹Ù¶÷




2. º»ÁúÁÖÀÇ¿¡ ´ëÇÑ ÁøÈ­·ÐÀÇ ¹Ý´ë¿Í Á¾(Species)ÀÇ °³³ä
3. ±â´É(function)°ú »ý¸í°úÇÐÀû ¼³¸í
4. À¯ÀüÀÚ
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2. ¡®³ëÀÎÀ» À§ÇÑ ³ª¶ó¡¯¿¡¼­ ¡®¾î¸°À̸¦ À§ÇÑ ³ª¶ó¡¯·ÎÀÇ Àüȯ
3. ȸ»öºû ½Å¼¼°è
4. ³ë³âÀÇ Àι®ÇÐ


¿øÇüº¹¿øÀÇ »õ·Î¿ò, ÇöÀçÈ­ÀÇ ÀÜÁ¸¹°
Çö½Ç°¨ÀÇ ÃÊ ½Ã°ø°£Àû »ó½Ç°ú ¹Ì¼ú












2. À̰ø°è ÀÇ»ç¼ÒÅë±³À°ÀÇ Àü°ø ¿¬°è¼º
3. Àü°ø ¿¬°èÀûÀÎ À̰ø°è ÀÇ»ç¼ÒÅë´É·Â Çâ»ó ´Ü°èº° ½Ç½À ÇÁ·Î±×·¥
4. Àü°ø ¿¬°èÀûÀÎ À̰ø°è ÀÇ»ç¼ÒÅë±³À°ÀÇ ¼ö¾÷ °èȹ¼­
5. Àü°ø ¿¬°èÀûÀÎ À̰ø°è ÀÇ»ç¼ÒÅë±³À°ÀÇ ±â´ë È¿°ú¿Í ¿î¿µ ¹®Á¦





ABSTRACT
1. ¼­·Ð
2. °ø°øµµ¼­°ü û¼Ò³â ÇÁ·Î±×·¥ ÇöȲ
3. °ø°øµµ¼­°ü û¼Ò³â ÇÁ·Î±×·¥ ¼ö¿äÁ¶»ç ¹× ºÐ¼®
4. °ø°øµµ¼­°ü û¼Ò³â ÇÁ·Î±×·¥ ¸ðÇü Á¦½Ã
5. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. µµ¼­°ü °¡Ä¡ÀÇ °è·®È­ ¿¬±¸
3. µµ¼­°üÀÇ °æÁ¦Àû °¡Ä¡ ¿¬±¸ µ¿Çâ
4. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼±Ç࿬±¸
3. ¹®ÇåÁ¤º¸ÇÐ ¿¬±¸ÀÚ ºÐ¼®
4. ¹®ÇåÁ¤º¸ÇÐ ¿¬±¸ÀÇ °è·®Àû ºÐ¼®
5. °á·Ð ¹× ¿ä¾à
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸ÀÇ ¹æ¹ý
4. ½Ã½ºÅÛ ¼³°è ¹× °³¹ß
5. ¿¬±¸ °á°ú ºÐ¼® ¹× Æò°¡
6. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ¿ì¸®³ª¶ó ¹ýÇÐÀü¹®´ëÇпøÀÇ ¼³Ä¡ °úÁ¤
3. ÁÖ¿ä ±¹°¡ÀÇ ¹ýÇÐÀü¹®´ëÇпø ±³À°Á¦µµ
4. ¿ì¸®³ª¶ó ¹ýÇÐÀü¹®´ëÇпøÀÇ Á¤º¸È°¿ë±³À° ½ÇÅÂ
5. ¹ýÇÐÀü¹®´ëÇпøÀÇ ¹ý·ü Á¤º¸È°¿ë±³À° Ȱ¼ºÈ­ ¹æ¾È
6. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸ ¹æ¹ý
4. µ¥ÀÌÅÍ ºÐ¼®
5. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ¿¬±¸ ¹æ¹ý
3. ÅëÇÕ ½Ã¼Ò·¯½ºÀÇ °³³ä
4. µ¿Çü ÀÌÀÇ¾î ±¸º° ¹æ¹ý
5. ÀúÀÚ¸í°ú ÀúÀÛ¸íÀÇ ¿ë¾î °ü°è È®Àå°ú ÇÑÁ¤¾î »ç¿ë¹æ¹ýÀÇ Á¦¾È
6. °á·Ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ¼±Çà ¿¬±¸
3. SCIÀÇ ¼±Á¤ ±âÁذú ±¹³» SCIE ÇмúÁöÀÇ ÃâÆÇ ÇöȲ
4. ±¹³» ÇмúÁöÀÇ SCIE µîÀç Ȱ¼ºÈ­ ¹æ¾È
5. °á·Ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ¼±Ç࿬±¸
3. ¿¬±¸Áú¹®
4. ¿¬±¸¼³°è ¹× ¹æ¹ý·Ð
5. °á°ú
6. ³íÀÇ ¹× ÇâÈÄ¿¬±¸
7. °á·Ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸ ¹æ¹ý
4. °á°ú ºÐ¼® ¹× °¡¼³ °ËÁ¤
5. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. Çѱ¹ °í¼­ÀÇ ¼ÒÀå °æÀ§¿Í º¸Á¸ »óȲ
3. ²Ã·¹Áê µå ÇÁ¶û½º ¼ÒÀ庻ÀÇ ¼º°Ý°ú Ư¡
4. ²Ã·¹Áê µå ÇÁ¶û½ºÀÇ ¸ð¸®½º ²Ù¶û ¼ÒÀ庻
5. ²Ã·¹Áê µå ÇÁ¶û½º ¼ÒÀ庻ÀÇ È°¿ë¹æ¾È
6. °á·Ð
Âü°í¹®Çå


1. Introduction
2. The Five Laws of Library Science
3. Appreciation from the LIS Professionals
4. Imperatives Motivated by Dr. S. R. Ranganathan¡¯s Five Laws: Then and Now
5. New Interpretations of Five Laws
6. Relevance of Five Laws in the Contemporary World
7. Conclusion
References


1. Introduction
2. National Information Policy for India
3. Information Science in India
4. Libraries in the Knowledge Society
5. Role of Library Associations
6. Role of National Knowledge Commission
7. Open Access
8. Consortia
9. Issues and Recent Developments
10. Conclusion
References


1. An Introduction: Unexpected Meeting with Mr.Ranganatha Yogeshwar
2. How the Five Laws of Library Science Has Influenced Library Activities in Japan
3. What Philosophical Challenges Are for Japanese Libraries?
4. What Measures Do Libraries Take for Challenges?
5. The Need of Theoretical Foundation for These Activities


1. Introduction
2. Five Laws and Libraries in Korea
3. Conclusion
References


1. Introduction
2. Overview of Different Editions of Colon Classification (CC)
3. Implication of Five Laws of Library Science on Colon Classification
4. Design of Depth Schedules based on Colon Classification 6th edition
5. Impressions on Colon Classification from the LIS Professionals
6. Colon Classification during Post-Ranganathan Period
7. Relevance of Colon Classification in the contemporary world of Librarianship
8. Concluding Remarks
References


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Abstract


Abstract


¥±. °í¿ëÀ¯ÁöÁö¿ø±ÝÁ¦µµÀÇ °³°ü
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¥³. °æ¿µÇذí¿Í °ü·ÃÇÑ Á¤Ã¥·ÐÀû °ËÅä
¥´. °á·Ð
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Abstract


¥±. °æ¿µ»ó ÇØ°í¿Í ³ëµ¿Á¶ÇÕÀÇ È°µ¿
¥². °í¿ë¾ÈÁ¤Çù¾àÀÇ ÇØ¼®»ó ÀïÁ¡
¥³. °í¿ë¾ÈÁ¤Çù¾à¿¡ À§¹ÝµÈ °æ¿µ»ó ÇØ°í
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¥³. 2010³â ³ëÁ¶¹ý °³Á¤
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¥±. Â÷º°½ÃÁ¤½ÅûÀÎ Àû°Ý
¥². ºñ±³´ë»ó±Ù·ÎÀÚ
¥³. Â÷º°½ÃÁ¤ÀÇ ´ë»ó
¥´. ÇÕ¸®Àû ÀÌÀ¯ À¯¹«ÀÇ ÆÇ´Ü
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Abstract


¥±. Áö±ÞµÈ ±Ý¿øÀÇ ¹ýÀû ¼º°Ý°ú ºÎ´çÀ̵æ¹Ýȯ ´ë»ó ¿©ºÎ
¥². À§¹Ý À¯ÇüÀÇ ¼¼ºÐÈ­
¥³. ÅðÁ÷±Ý ¸í¸ñÀÇ ±Ýǰ¿¡ ´ëÇÑ ¹Ýȯû±¸ÀÇ ¹èÁ¦
¥´. °á·Ð
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Abstract


¥±. Çϵµ±Þ°Å·¡ÀÇ ±¸Á¶¿Í ¹ýÀû ±ÔÁ¦
¥². »ç³»Çϵµ±ÞÀÇ Àû¹ý¼º ÆÇ´Ü ±âÁذú ÆÇ·Ê
¥³. »ç¾÷ÁÖÀÇ Àü·«Àû ¼±ÅÃ
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1. ¼­·Ð
2. ¼±Ç࿬±¸ °íÂû
3. ¿¬±¸¹æ¹ý
4. ¿¬±¸°á°ú
5. ³íÀÇ ¹× °á·Ð
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1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¹æ¹ý
4. ¿¬±¸°á°ú
5. °á·Ð ¹× Á¦¾ð
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1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¹æ¹ý
4. ºÐ¼®°á°ú
5. °á·Ð ¹× Á¦¾ð
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1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¼±Ç࿬±¸ °ËÅä
4. ºÐ¼®¹æ¹ý
5. ºÐ¼® °á°ú
6. °á·Ð
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1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¹æ¹ý
4. ¿¬±¸°á°ú
5. ³íÀÇ ¹× °á·Ð
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Abstract
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2. ¿¬±¸ ÀÚ·á¿Í ÀÚ·áó¸®
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1. ¹®Á¦Á¦±â ¹× ¿¬±¸¸ñÀû
2. ¿¬±¸ ÀÚ·á ¹× ¹æ¹ý
3. Æò±Õ±â¿ÂÀÇ º¯È­½ÃÁ¡
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Abstract
1. ¼­·Ð
2. ¿¬±¸Áö¿ª ¹× ºñ¿ë¿äÀÎ ¼³Á¤
3. GIS µ¥ÀÌÅ͸¦ ÀÌ¿ëÇÑ ´ÜÀ§ ºñ¿ë »êÁ¤
4. ÇØ¼ö¸é »ó½Â¿¡ µû¸¥ °æÁ¦Àû ¼Õ½Ç ºÐ¼®
5. °á·Ð ¹× ÇâÈİúÁ¦
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Abstract
1. ¼­·Ð
2. Áö¿ª ÀÚÄ¡Á¶Á÷ ÀçÆí°ú ÁÖ¹ÎÀÚÄ¡¿¡ °üÇÑ ³íÀÇ
3. ÀÌÄÉÄí¿Í Áö±¸ÀÇ ÇöȲ
4. ÀÌÄÉÄí¿Í ÁøÈïȸÀÇ ¼³¸³°æÀ§ ¹× º¯Ãµ°úÁ¤
5. ÀÌÄÉÄí¿Í Áö±¸ÀÇ ½ÇÁúÀû ±âÃÊÁ¶Á÷ - ÀüÅëÃë¶ôÀÇ ¿ªÇÒ°ú Ư¡À» Áß½ÉÀ¸·Î
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Abstract
1. ¼­·Ð
2. »óÇÏÀ̵µ½ÉÀç»ý´ã·ÐÀǺ¯È­ : ¡®À§Çè ÁÖÅÃö°Å¡¯¿¡¼­ ¡®¿ª»ç°æ°üº¸È£¡¯·Î
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Abstract
1. ¼­·Ð
2. ±³Â÷·ÎÀÇ È°¿ë°ú ÇöȲ
3. ±³Â÷·ÎÀÇ ¸íĪºÎ¿©
4. ±³Â÷·ÎÀÇ °ü¸®¿Í µî±ÞÈ­
5. °á·Ð
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1. Introduction
2. The state and globalization in mega-project : a new approach
3. Mage-project and ¡®incompetent bureaucrats preoccupied with private interest¡¯
4. Conclusion
References



¥°. ¼­·Ð
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¥°. ¼­·Ð
¥±. °¡Ä¡»ç½½º° ±â¼ú Àü¸Á
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¥°. Introduction
¥±. VLC Network Architecture and Service Scenarios
¥². Key Technologies and Issues for VLC Protocols
¥³. Conclusion
°¨»çÀÇ ±Û
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¥±. °¡½Ã±¤ ¹«¼± Åë½ÅÀ» ÀÌ¿ëÇÑ LBS
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¥°. Introduction
¥±. Issues in the Design of MAC Protocols for Ad Hoc Networks with Directional Antennas
¥². MAC Protocols for Ad Hoc Networks with Directional Antennas
¥³. Comparison of Protocols
¥´. Conclusions
Acknowledgement
Âü°í¹®Çå
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ABSTRACT
¥°. ¼­·Ð
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ABSTRACT
¥°. ¼­·Ð
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¥´. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
¥±. º»·Ð
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¥³. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
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¥². Á¦¾ÈÇÏ´Â Q-PMIPv6 ±â¹ý
¥³. ¼öÄ¡ºÐ¼®À» ÅëÇÑ ¼º´É ºñ±³
¥´. ½Ã¹Ä·¹ÀÌ¼Ç ¼º´É ºÐ¼®
¥µ. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
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¥². HACA ¾Ë°í¸®Áò
¥³. ¼º´ÉÆò°¡
¥´. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
¥±. System Model and LagrangianRelaxation
¥². Distributed Uplink Power Control Algorithm
¥³. Downlink Throughput -Maximization Using the Up- and Downlink Duality
¥´. Network Duality Gap
¥µ. Numerical Results
¥¶. Conclusions
References


ABSTRACT
¥°. Introduction
¥±. Determination of Number of Errors in the Codeword
¥². Optimized Processor Structure for Determining the Number of Errors in the RS Codeword
¥³. Performance Evaluation of the Processor for 2 Error Case
¥´. Performance Evaluation of the Pro Cessor for 3 Error Case
¥µ. Conclusion
References


ABSTRACT
¥°. ¼­·Ð
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¥². HTTPÀÇ ¼­ºñ½ºº° ºÐ·ù ±âÁØ
¥³. HTTPÀÇ ¼­ºñ½ºº° ºÐ·ù ±âÁØ
¥´. ºÐ¼® °á°ú
¥µ. °á·Ð ¹× ÇâÈÄ ¿¬±¸
Âü°í¹®Çå


ABSTRACT
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ABSTRACT
¥°. ¼­·Ð
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¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
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¥³. ½ÇÇè °á°ú
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ABSTRACT
¥°. ¼­·Ð
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¥³. ¼º´É Æò°¡
¥´. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
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¥². Á¦¾ÈµÈ µðºí·ÎÅ· ÇÊÅͱ¸Á¶
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ABSTRACT
¥°. ¼­·Ð
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¥³. MMRÀÇ À̵¿ °æ·Î¸¦ °í·ÁÇÏ´Â ¶ó¿ìÆÃ ¸ÞÆ®¸¯
¥´. ¶ó¿ìÆÃ ¸ÞÆ®¸¯À» ÀÌ¿ëÇÑ ¶ó¿ìÆÃ ¾Ë°í¸®Áò
¥µ. ¼º´É Æò°¡
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ABSTRACT
¥°. ¼­·Ð
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¥². ºÐ¼® ¹× °íÂû
¥³. °á·Ð
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ABSTRACT
¥°. ¼­·Ð
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¥². Á¦¾È ¹æ¹ý
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ABSTRACT
¥°. ¼­·Ð
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¥². Á¦¾È ½Ã½ºÅÛ
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¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ¼Û¼ö½Å±â ¼³°è
¥². ¼Û¼ö½Å±â Á¦ÀÛ ¹× ½ÃÇè
¥³. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ½Ã½ºÅÛ ¸ðÇü
¥². Àúº¹ÀâµµÀÇ Çù·Â Àü¼Û ¹æ½Ä ¼³°è
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¥´. ¼º´É Æò°¡ ¹× ¸ðÀÇ ½ÇÇè
¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. Introduction
¥±. System Model
¥². Hard Decision
¥³. Soft Decision
¥´. Simulation Results
¥µ. Conclusion
Appendix A
Appendix B
Appendix C
Appendix D
References


ABSTRACT
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ABSTRACT
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ABSTRACT
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ABSTRACT
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¥². BFM ½Ã¹Ä·¹ÀÌ¼Ç °á°ú
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ABSTRACT
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¥². ½ÇÇè ¹× °á°ú
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ABSTRACT
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¥². DVB-NG¸¦ À§ÇÑ TPC ºÎȣȭ ¹æ½Ä Á¦¾È
¥³. °á·Ð
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ABSTRACT
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¥³. ÀûÁ¶·ù ÀÎ½Ä ¹× ½ÇÇè °á°ú
¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. Introduction
¥±. Related Works
¥². Incident Management Process
¥³. Our Incident Management System
¥´. Simulation
¥µ. Conclusion
References


ABSTRACT
¥°. Introduction
¥±. System Descriptions
¥². Methodology and Scenario
¥³. Simulation and results
¥³. Conclusions
References


ABSTRACT
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². Á¦¾ÈµÈ ÇнÀ ¸ðµ¨ ¹× È®Àå ¸ðµâ
¥³. ´Éµ¿Àû Âü¿© ¸ðÀǽÇÇè°ú Æò°¡
¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ZigbeeÀÇ Ã¤³Î Á¢±Ù ¹æ¹ý
¥². Zigbee ÀÇ Åë½Å ¹®Á¦Á¡
¥³. Á¦¾ÈÇÏ´Â ÇÁ·¹ÀÓ
¥´. ½Ã¹Ä·¹ÀÌ¼Ç È¯°æ
¥µ. ½Ã¹Ä·¹ÀÌ¼Ç ºñ±³ ºÐ¼®
¥³. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ½Ã½ºÅÛ ¸ðµ¨
¥². È¿À²Àû LED Á¶¸íÁ¦¾î ±â¹ý
¥³. ¼º´ÉºÐ¼®
¥´. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. µ¿ÀÛ¿ø¸® ¹× ½Ã½ºÅÛ ¼³°è
¥². ½ÇÇè ±¸¼º ¹× °á°ú ºÐ¼®
¥³. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ž籤 Áý±¤ÀåÄ¡ Á¦ÀÛ
¥². ž籤 䱤 ½Ã½ºÅÛÀÇ ÀÀ¿ë
¥³. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. OLED Á¶¸í»ê¾÷ÀÇ ÇöȲ°ú ¼ºÀå°¡´É¼º
¥². ±¹³» OLED Á¶¸í»ê¾÷ÀÇ ±â¼ú°æÀï·Â
¥³. OLED Á¶¸í»ê¾÷ ³» R&D À¯¸Á ºÐ¾ß µµÃâ
¥´. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. °ü·Ã¿¬±¸
¥². ¹è°æÁö½Ä ¹× °¡Á¤»çÇ×
¥³. Á¦¾ÈÇϴ Ű °ü¸® ±â¹ý
¥´. ¼º´É ºÐ¼®
¥µ. °á·Ð
Âü°í¹®Çå


ABSTRACT
¥°. ¼­·Ð
¥±. ½Ç³» ÀüÆÄȯ°æ¿¡¼­ÀÇ °æ·Î¼Õ½Ç¸ðµ¨
¥². ÇÔÁ¤³»ºÎ°ø°£ÀÇ Ã¤³ÎÃøÁ¤
¥³. ÃøÁ¤ °á°ú ¹× ÀüÆÄÃßÀû±â¹ý ºñ±³
¥´. °á·Ð
Âü°í¹®Çå



¥°. °³¿ä
¥±. À§¼º ¿µ»ó ·¹ÀÌ´Ù(SAR) ±â¼ú
¥². À§¼ºÅ¾Àç SAR ½Ã½ºÅÛ ÇöȲ
¥³. À§¼º SAR Ȱ¿ë ±â¼ú
¥´. SAR ±â¼ú ¹ßÀü Àü¸Á
¥µ. °á·Ð
Âü°í¹®Çå


¥±. SAR ½Ã½ºÅÛ °³¹ß ÇöȲ
¥². SAR ±â¼ú ¹ßÀü ¹æÇâ
¥³. °á·Ð
Âü°í¹®Çå


¥±. º»·Ð
¥². °á·Ð
Âü°í¹®Çå


¥±. SAR ¿µ»ó Çü¼º ¾Ë°í¸®Áò
¥². SAR ½Åȣó¸® ±â¼ú ¹ßÀü
¥³. °á·Ð
Âü°í¹®Çå


¥°. ¼­·Ð
¥±. À°»ó Ȱ¿ë ºÐ¾ß
¥². ÇØ¾ç Ȱ¿ë ºÐ¾ß
¥³. ±ØÁö Ȱ¿ë ºÐ¾ß
¥´. ´ë±â Ȱ¿ë ºÐ¾ß
¥µ. °á·Ð
Âü°í¹®Çå


¥°. ¼­·Ð
¥±. SAR ¿µ»óó¸®ÀÇ ¿ø¸®
¥². ¸ðÀǽÇÇè
¥³. STAPÀÇ ±âº» ¿ø¸®
¥´. °á·Ð
Âü°í¹®Çå


¥±. ¼±Áø±¹ÀÇ SAR ATR ±â¼ú ÇöȲ
¥². SAR ATR ±â¼ú
¥³. °á·Ð
Âü°í¹®Çå


¥°. ¼­·Ð
¥±. Polarimetic Çà·Ä ¹× POLSAR ÀÚ·á Ç¥Çö ¹æ¹ý
¥². Polarimetric Target Decomposition ÀÌ·Ð
¥³. SAR Polarimetry Ȱ¿ë»ç·Ê
¥´. °á·Ð
Âü°í¹®Çå


¥±. InSAR Geometry
¥². InSAR °£¼· À§»ó
¥³. InSAR ÀÚ·á ó¸® ¹× °üÃø ±â¹ý
¥´. ÃÖ±Ù InSAR ±â¼ú µ¿Çâ
¥µ. °á·Ð
Âü°í¹®Çå


¥±. Opening Ceremony
¥². Plenary Session
¥³. APSAR Committee Meeting
¥´. Conference Banquet
¥µ. Closing Ceremony
¥¶. Short Course and Technical Tour
¥·. Exhibition and Sponsors
¥¸. APSAR Committee
¥¹. APSAR È«º¸ ÃâÆÇ¹°
?. APSAR °³ÃÖ ¼Ò°¨
ºÎ·Ï 1. Opening Address
ºÎ·Ï 2. Banquet Address
ºÎ·Ï 3. Closing Address


¥±. ¿øÀÚ·Â ÀüÀÚ±âÆÄ °ü·Ã ÀÎÇã°¡ ¿ä°Ç
¥². ±â±â°ËÁõÀÌ ¿ä±¸µÇ´Â ¿øÀÚ·Â Àü±â±â±â ¹× °èÅë
¥³. ÀüÀÚ±âÆÄ »ó¼¼ ±â±â °ËÁõ ¿ä°Ç
¥´. ÀüÀÚ±âÆÄ ±â±â°ËÁõ ¹× ÀüÀÚ±âÆÄ°£¼· ±Øº¹ ¹æ¾È
Âü°í¹®Çå


¥±. Á֯ļö ÀÚ¿ø °øÀ¯±â¼ú ¹× Ç¥ÁØÈ­ µ¿Çâ
¥². ÁÖ¿ä±¹ÀÇ ±â¼ú°³¹ß µ¿Çâ
¥³. °á·Ð
Âü°í¹®Çå


¥±. ±â¾÷¿¬Çõ - LIG³Ø½º¿øÀÌ °É¾î¿Â ±æ
¥². ±â¾÷ÇöȲ
¥³. ÁÖ¿ä ¹«±â
¥´. 2011³â ÆÇ±³ ½Ã´ë °³¸·


Áö¿ª»çȸ¿Í ÇÔ²² ³ª´©´Â »ï¼ºÅ»·¹½º


Abstract
¥°. ¼­·Ð
¥±. ¹«Á¢Á¡ Àü·Â Àü¼Û ÀåÄ¡ÀÇ ±¸Á¶ ¹× ¼³°è
¥². ¼Û½ÅºÎ¿Í ¼ö½ÅºÎÀÇ ÀÓÇÇ´ø½º ¸ÅĪ
¥³. ¼Û¼ö½ÅºÎ °£ÀÇ Á¤·ÄÀÌ ¸ÂÁö ¾Ê¾ÒÀ» °æ¿ìÀÇ Àü·ÂÀü´Þ Ư¼º ºÐ¼®
¥´. ¹«Á¢Á¡ Àü·Â Àü¼Û ÀåÄ¡ Á¦ÀÛ ¹× ÃøÁ¤
¥µ. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. Àü·ÂÁõÆø±â ¼ÒÀÚ ¹× ·Îµå-Ç® ÃøÁ¤
¥². Àü·ÂÁõÆø±â ¸ðµâ ¼³°è
¥³. Á¦ÀÛ ¹× ÃøÁ¤ °á°ú
¥´. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ÀûÀÀ Á֯ļö Á¦¾î¸¦ °®´Â ¹«¼± Àü·Â Àü¼Û ½Ã½ºÅÛ
¥². ÇÙ½É È¸·Î ¼³°è
¥³. ÀûÀÀ Á֯ļö Á¦¾î ȸ·Î¸¦ °®´Â ¹«¼± Àü·Â Àü¼Û ½Ã½ºÅÛ
¥´. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ¿µ»óÈ­ ¾Ë°í¸®Áò ºÐ¼®
¥². Àü¹æ °üÃø·¹ÀÌ´õ ¿µ»óÈ­ ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. Á¦¾ÈµÈ Ç¥Àû ½Äº°±â
¥². Ç¥Àû ½Äº° ½ÇÇè ¹× °á°ú
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ½ÅÈ£ ó¸® ±â¹ý ¿¬±¸
¥². ½Ã¹Ä·¹ÀÌ¼Ç °á°ú
¥³. °á·Ð
Âü°í¹®Çå


Abstract
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¥±. ¾ÈÅ׳ª ¼³°è ¹× µ¿ÀÛ Æ¯¼º
¥². ¾ÈÅ׳ª Á¦ÀÛ ¹× ÃøÁ¤
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ȸÀüÇü SAR ½Ã½ºÅÛ
¥². FDTD ±â¹ýÀ» ÀÌ¿ëÇÑ ¸ðÀÇ ½ÇÇè
¥³. ½Ã½ºÅÛ ¼º´É °ËÁõ
¥´. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ¿ª LÇü ¹«±ÞÀü ¼ÒÀÚ °áÇÕ ±¤´ë¿ª ÇÁ¸°Æ®Çü Æúµðµå ¸ð³ëÆú ¾ÈÅ׳ª ¼³°è
¥². WLAN ´ë¿ª(5.15¢¦5.85 GHz) ÀúÁö ±¤´ë¿ª ÇÁ¸°Æ®Çü Æúµðµå ¸ð³ëÆú ¾ÈÅ׳ª
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ¾ç¹æÇâ ÁõÆø±â ¼³°è
¥². ¾ç¹æÇ⠴ɵ¿ À§»óº¯È­±â ¼³°è ¹× °á°ú
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ¼³°è ¹× ½Ã¹Ä·¹À̼Ç
¥². Á¦ÀÛ ¹× ÃøÁ¤ °á°ú
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ½ÇÇè ¹æ¹ý ¹× °á°ú ºÐ¼®
¥². ½ÇÇè °á°ú¿¡ ´ëÇÑ ÇØ¼®
¥³. È¿°úÀû µµÀÔ ¹æ¾ÈÀÇ Á¦¾È
¥´. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. SCA ±¸Á¶
¥². SCA ¼³°è
¥³. SCA Á¦ÀÛ ¹× ÃøÁ¤
¥´. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. Á֯ļö ü¹è±âÀÇ °íÁ¶ÆÄ ºÐ¼®
¥². Class-F±Þ Á֯ļö ü¹è±â ¼³°è ¹× ÃøÁ¤
¥³. °á·Ð
Âü°í¹®Çå


Abstract
¥°. ¼­·Ð
¥±. ¹ÙÀ̽ºÅÂÆ½ ·¹ÀÌ´õÀÇ ·¹ÀÎÁö -µµÇ÷¯ ÇÁ·Î¼¼½Ì
¥². ·¹ÀÎÁö ¿öÅ© º¸»ó ¾Ë°í¸®Áò
¥³. ½Ã¹Ä·¹À̼Ç
¥´. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ¾ÐÀü¼ÒÀÚ ÆÒÀÇ ¹æ¿­ÆÇ ¼³°è
3. ¼öÄ¡ÇØ¼® ¸ðµ¨
4. °á°ú ¹× ÅäÀÇ
5. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
±×¸®½º ¹®ÀÚ
1. ¼­·Ð
2. ¼º´É ºÐ¼®
3. °á°ú ¹× Åä·Ð
4. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. »çÀÌŬ ±¸¼º°ú °ú±Þ¾ÐÀÇ Àû¿ë
3. ½ÇÇèÀåÄ¡ ¹× ¹æ¹ý
4. ½ÇÇè°á°ú ¹× °íÂû
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
±âÈ£¼³¸í
1. ¼­·Ð
2. ½ÇÇèÀåÄ¡ ¹× ¹æ¹ý
3. ½ÇÇè°á°ú ¹× °íÂû
4. ¼öÄ¡ÇØ¼®
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ½ÇÇèÀåÄ¡ ¹× Á¶°Ç
3. °á°ú ¹× °íÂû
4. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ÆÄ·Â ¹ßÀü±âÀÇ ¼öÇÐÀû ¸ðµ¨
3. °á°ú ¹× °íÂû
4. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. IMOÀÇ ¿Â½Ç°¡½º Á¤Ã¥
3. EEOIÀÇ °íÂû ¹× ¿îÇ×¼± Àû¿ëºÐ¼®
4. New EEOI Á¦¾È ¹× ¿îÇ×¼± Àû¿ë
5. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ½ÇÇè Àç·á ¹× ¹æ¹ý
3. ½ÇÇè °á°ú ¹× °íÂû
4. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ½ÇÇè Àç·á ¹× ¹æ¹ý
3. ½ÇÇè °á°ú ¹× °íÂû
4. °á·Ð
ÈÄ ±â
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ¼öÄ¡ÇØ¼® ¹üÀ§¿Í ¹æ¹ý
3. ¼öÄ¡ÇØ¼® °á°ú ¹× ºÐ¼®
4. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ÇØ»ódz·Â¹ßÀü´ÜÁö ·¹À̾ƿô Á߿伺
3. dz·ÂÅͺó ¹× ÇØ»ódz·Â¹ßÀü´ÜÁö
4. Àü»êÀ¯µ¿Çؼ®
5. °á°ú ¹× °íÂû
6. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ¼Ò¼ö·Â¿ë Æ©ºí·¯ ¼öÂ÷ ¹× ½ÃÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. LED ½Ã½ºÅÛ
3. Á¦¾î½Ã½ºÅÛ
4. ½ÇÇè ¹× °íÂû
4. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. °ü·Ã ¿¬±¸ ¹× ±â¼ú
3. ¸ð´ÏÅ͸µ ¾îÇø®ÄÉÀÌ¼Ç ¼³°è
4. ±¸Çö ¹× ½ÃÇè
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ±âÁ¸¿¬±¸¿Í Àü¼ÛƯ¼º
3. NTCR °æ·Î¹èÁ¤¹æ½Ä
4. ¼º´ÉÆò°¡
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ÇØ»óÅë½Åȯ°æ°ú ÀÀ¿ë
3. ±âÁ¸ ¿¬±¸
4. ÇØ»óÅë½Å¸Á ¸ðµ¨°ú °æ·Î¹èÁ¤
5. ¼º´ÉÆò°¡
6. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. Á÷Á¢ÅäÅ©Á¦¾î
3. ½Å°æÈ¸·Î¸ÁÀ» ÀÌ¿ëÇÑ ¼¾¼­¸®½º ¼ÓµµÃßÁ¤±â
4. ½Ã¹Ä·¹À̼Ç
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ´ëÁöÀü¾ÐÀÇ Áß¼ºÁ¡
3. ¿¬»ê¸ðµâÀÇ ±¸¼º
4. ºÐ¼®°ú °á°ú
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ´ëÁöȸ·ÎÀÇ ÇØ¼®
3. ¿¬»ê¸ðµâÀÇ ±¸¼º
4. ºÐ¼®°á°ú
5. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. ¿¬±¸ ¹üÀ§¿Í ¹æ¹ý
3. ½Ã¹Ä·¹ÀÌ¼Ç °á°ú ¹× ºÐ¼®
4. °á·Ð
Èıâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
1. ¼­·Ð
2. Áö±¸Åë°èÇÐ
3. ÇöÀå ÀÚ·áÀÇ Àû¿ë
4. ¼øÂ÷ °¡¿ì½Ã¾È ½Ã¹Ä·¹À̼ÇÀ» ÀÌ¿ëÇÑ ºÒÈ®½Ç¼º ÃøÁ¤
5. °á·Ð
ȍȍ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


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¥±. ¿¬±¸¹æ¹ý
¥². °á°ú
¥³. °íÂû
¥´. Àû¿ä
¥µ. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú
¥³. °íÂû
¥´. Àû¿ä
¥µ. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
¥±. ¿¬±¸¹æ¹ý
¥². °á°ú ¹× °íÂû
¥³. Àû¿ä
¥´. Àο빮Çå


¥°. ¼­·Ð
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¥³. Àû¿ä
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¥°. ¼­·Ð
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¥³. Àû¿ä
¥´. Àο빮Çå


Materials and Methods
Results
Discussion
Acknowledgement
References
ÃÊ·Ï


Materials and Methods
Results and discussion
References
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Materials and Methods
Results and Discussion
Acknowledgement
References
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Materials and Methods
Results and Discussion
Acknowledgment
References
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References
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References
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Multiple molecular targets of sensitizers in the TRAIL-mediated apoptosis
Mechanism of resistance to TRAIL
Strategies to induce TRAIL sensitivity
Novel strategy via modulation ofTRAIL-related components
Conclusion
Acknowledgment
References
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G-CSF ±â´É°ú ±¸Á¶
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Acknowledgement
References
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1. Introduction
2. Problem Description
3. Solution Approach
4. Computational Results
5. Conclusion
References


1. Introduction
2. Problem Statement and Fundamental Properties
3. An Exact Splitting Algorithm for PTL[4] and An Example
4. Concluding Remarks
References
Appendix


1. Introduction
2. Problem Description
3. Optimal Algorithm
4. Computational Results
5. Conclusions
References


1. Introduction
2. Incomplete Information
3. Methodology
4. Application
5. Conclusions
References


1. Introduction
2. Regression Analysis and Previous Stock Price Models
3. A Stock Price Model Based on a Fractionally Integrated Process
4. Empirical Results
5. Conclusion
References


1. Introduction
2. Model
3. Parametric Study
4. Conclusion
References


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3. Research Methodology
4. Discussion
5. Conclusion and Implications
References
Appendix 1


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TOXICOLOGICAL CHARACTERISTICS OF PAs
EFFECTS ON HUMANS
DISCUSSION
REFERENCES


MATERIALS AND METHODS
RESULTS AND DISCUSSION
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGEMENT
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGMENT
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCCUSION
ACKNOWLEDGEMENTS
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGEMENT
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGMENTS
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGEMENTS
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGEMENTS
REFERENCES


MATERIALS AND METHODS
RESULTS
DISCUSSION
ACKNOWLEDGMENTS
REFERENCES





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REFERENCES
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1. ¼­·Ð
2. ½ÇÇèÀåÄ¡ ¹× ¹æ¹ý
3. ½ÇÇè°á°ú ¹× °íÂû
4. °á·Ð
Èıâ
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Abstract
1. ¼­·Ð
2. ¾ÐÃà/Èí¼ö½Ä ÇÏÀ̺긮µå È÷Æ®ÆßÇÁ
3. ½ÇÇèÀåÄ¡ ¹× ½ÇÇè¹æ¹ý
4. ½ÇÇè°á°ú ¹× °íÂû
5. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ½ÇÇè ÀåÄ¡ ¹× Á¶°Ç
3. º»·Ð
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ¼öÄ¡ÇØ¼® ¸ðµ¨
3. °á°ú ¹× °ËÅä
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. Áõ±âÅÍºó ¼³°è ¹× ¼º´ÉÇØ¼®
3. °á°ú ¹× ÅäÀÇ
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. º¹ÇÕÇü ÇÏÀ̺긮µå ±¼»è±âÀÇ ±¸¼º
3. µ¿·ÂÁ¦¾î ¾Ë°í¸®Áò ¹× ºÎÇÏÁ¶°Ç
4. ½Ã¹Ä·¹ÀÌ¼Ç °á°ú
5. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. À¯ÇÑ¿ä¼Ò¸ðµ¨ ¹× ÇØ¼®Á¶°Ç
3. ÇØ¼®°á°ú
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ÀÎÀå½ÃÇè
3. Å©¸®ÇÁ ½ÃÇè
4. À¯ÇÑ ¿ä¼Ò ÇØ¼®
5. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. º£¾î¸µ ½ºÅ©·ç º¸Æ®(boat)ÀÇ °­µµÇؼ® ¹æ¹ý
3. º£¾î¸µ ½ºÅ©·ç º¸Æ®ÀÇ °­µµÇؼ® °á°ú ¹× °íÂû
4. X¼± ´ÜÃþÃÔ¿µ±â¿ë º£¾î¸µ ½ºÅ©·çÀÇ À¯ÇÑ¿ä¼ÒÇØ¼®
5. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ÁßÀÌÀÇ ±âÇÏÇü»ó ¸ðµ¨¸µ
3. ÁßÀÌÀÇ À¯ÇÑ¿ä¼Ò ¸ðµ¨
4. À¯ÇÑ¿ä¼Ò ÇØ¼®°á°ú
5. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ÀüÀڱ⠱¸µ¿ ½Ã½ºÅÛ
3. ½ÇÇè
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ½Ã½ºÅÛ ¸ðµ¨¸µ
3. ÆÄ¶ûÇÏÁß ¸ðµ¨¸µ
4. µ¿Àû °Åµ¿ ½Ã¹Ä·¹À̼Ç
5. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. »ç¶÷ ¼ÕÀÇ ¿òÁ÷ÀÓ
3. Data GloveÀÇ ¼³°è
4. Á¦¾î±â(Controller)
5. ½ÇÇè
6. °á·Ð
ȍȍ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. LCD ¹Ý¼Û·Îº¿ÀÇ ±¸Á¶
3. ÁÖÇàºÎ °¨¼Ó±âÀÇ Áøµ¿Æ¯¼º ºÐ¼®
4. µ¥ÀÌÅÍ Ãëµæ Á¶°Ç ¼±Á¤
5. ¹«¼±µ¥ÀÌÅÍ Ãëµæ ½Ã½ºÅÛ ±¸Ãà
6. »óۨ½Ã ÆÄ¶ó¹ÌÅÍ ¼±Á¤
7. »óۨ½Ã ¹æ¹ý Á¦¾È
8. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. Ãà¼ÒÈ­ ±â¹ý
3. Ãà¼ÒÇü ¹«ÈùÁö ·ÎÅÍ ¼³°è
4. Ãà¼Ò ·ÎÅÍ ½ÃÇè ÀåÄ¡
5. ½ÃÇè
6. ½ÃÇè°á°ú ¹× °íÂû
7. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ¹ëºê ¸ðµ¨¸µ
3. Á¦¾î±â ÀÌ·Ð ¹× ¼³°è
4. ¿îµ¿ Á¦¾î ½ÇÇè
5. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ´ÜÀ§ ¸ÞÄ¿´ÏÁò
3. ¼³°è Àû¿ë ¿¹
4. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ±ÝÇü ¼³°è ¹× »çÃ⼺Çü ÇØ¼®
3. »çÃ⼺Çü ÇØ¼® °á°ú ¹× °íÂû
4. ±ÝÇü Á¦ÀÛ ¹× ½Ã»çÃâ ½ÇÇè
5. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ¿­Á¢ÃËÀúÇ×À» °í·ÁÇÑ ±ÝÇü¿Âµµ °íÂû
3. ¿­Á¢ÃËÀúÇ×À» °í·ÁÇÑ ¿­-À¯µ¿ ¿¬°èÇØ¼®
4. °á·Ð
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ±ÝÇü ¼³°è ¹× »çÃ⼺Çü ÇØ¼®
3. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. Àڱ⿬¸¶¹ýÀÇ °¡°ø ¸ÞÄ¿´ÏÁò
3. ±×·çºê Çü»ó°ú ½ÇÇèÀÇ ±¸¼º
4. ±×·çºê Çü»ó¿¡ µû¸¥ Ç¥¸é°ÅÄ¥±â º¯È­
5. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ³Ã°¢È¸·ÎÀÇ ¸ðµ¨¸µ
3. ¸Þ½¬¸ðµ¨»ý¼º ¹× ÇØ¼®
4. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¸ðµ¨ ¹× ¼öÄ¡Àû ÇØ¼®
4. ½ÇÇèÀåÄ¡ ¹× ½ÇÇè¹æ¹ý
5. ½ÇÇè°á°ú ¹× °íÂû
6. °á·Ð
Èıâ
Âü°í¹®Çå


Abstract
1. ¼­·Ð
2. ½ÇÇè Àç·á ¹× ¹æ¹ý
3. ½ÇÇè °á°ú ¹× °íÂû
4. °á·Ð
Èıâ
Âü°í¹®Çå










Çѱ¹Çü ¿øÀü°ú ¾ÈÀü¼º
¿øÀÚ·Î ±¸Á¶ ¼³°è
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±¹³»¿Ü °ü·Ã ¿¬±¸ µ¿Çâ
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SMART ¿øÀÚ·ÎÀÇ ¼Ò°³
ÆÄ±«¿ªÇÐÀû Á¢±Ù¹ý
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Ãʰí¿Â°¡½º·ÎÀÇ ±â°è ¹× ±â±â ±â¼ú
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Abstract
¥°. ¼­·Ð
¥±. Time-of-Flight ±íÀÌ Ä«¸Þ¶óÀÇ ¿ø¸®¿Í Ư¡
¥². Time-of-Flight ±íÀÌ ¿µ»óÀÇ °³¼± ¹æ¹ý
¥³. È¥ÇÕÇü ¹æ½ÄÀÇ °íÈ­Áú ±íÀÌ »ý¼º ¹æ¹ý
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Á¦¾ÈÇÏ´Â ½Ã½ºÅÛ
¥³. ½ÇÇè °á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Photometric Stereo ±â¹ý
¥². ¿µ»ó Àüó¸®
¥³. µÎ ´ëÀÇ ½º¸¶Æ®ÆùÀÇ »ó´ëÀû ÀÚ¼¼ ÃßÁ¤
¥´. ¹ý¼± Áöµµ ¹× ±íÀÌ ¿µ»ó »ý¼º
¥µ. ½ÇÇè °á°ú
¥¶. °á·Ð ¹× ÇâÈÄ ¿¬±¸
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ½Ç½Ã°£ Áö»óÆÄ ¹æ¼Û Àü¼Û ±Ô°Ý(MPEG-2 TS)
¥². ATSC NRT ±â¼ú
¥³. NRT±â¹Ý ¿¬µ¿Çü Áö»óÆÄ 3D ¼­ºñ½º¸¦ À§ÇÑ MPEG-2 Àü¼Û ½ºÆ®¸² È®Àå ¾Ë°í¸®Áò
¥´. ½ÇÇè ¹× °ËÁõ
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. CriminisiÀÇ ÀÎÆäÀÎÆÃ ¾Ë°í¸®Áò
¥². Á¦¾ÈÇÏ´Â ¾Ë°í¸®Áò
¥³. ½ÇÇè
¥³. °á·Ð
¥´. °¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. Frame-Compatible Top-bottom Packing
¥². Horizontal Line-based adaptive filter
¥³. Interpolation by NEDI6
¥´. Combined Line-based adaptive interpolation and NEDI6
¥µ. Experimental Results
¥¶. Conclusions
References
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ÀÌÁß °èÃþ ÆÐ·¼·¢½º ¹è¸®¾î
¥². ½ÇÇè
¥³. ÀÀ¿ëºÐ¾ß
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥±. °æ°è Á¤º¸ ±â¹Ý ¾ó±¼ ¼öÆò À§Ä¡ °ËÃâ
¥². ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ¿ÀÂ÷È®»ê¹ý
¥². ÀûÀÀÀû ¿ÀÂ÷ È®»ê¹ý
¥³. ½ÇÇè °á°ú ¹× ºÐ¼®
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ½º³×ÀÌÅ© ¾Ë°í¸®ÁòÀ» ÀÌ¿ëÇÑ ÃßÀû°ú ¹®Á¦Á¡
¥². Á¦¾ÈÇÏ´Â °³¼±µÈ ½º³×ÀÌÅ© ¾Ë°í¸®Áò
¥³. ½ÇÇè ¹× °á°ú ºÐ¼®
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. Lens distortion model
¥². The proposed method
¥³. Experimental results
¥´. Conclusions
References
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². Á¦¾ÈµÈ ·¹ÀÌ´õ ½ÅÈ£±×·ìÈ­ ±â¹ý
¥³. ½ÇÇè
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°Ô


Abstract
¥°. ¼­·Ð
¥±. ·Îº¿ ¸ðµ¨¸µ
¥². Á¦¾î ¹× ½Ã¹Ä·¹À̼Ç
¥³. ½ÇÇè
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. Main Results of Proof Utkin¡¯s Theorem
¥². Design Example and Simulation Studies
¥³. Conclusions
References
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Á¤¹Ð °Å¸® ÃøÁ¤ ÀåÄ¡
¥². °Å¸® Á¤º¸¸¦ ÀÌ¿ëÇÑ ¹°Ã¼ ÀνÄ
¥³. ½ÇÇè ¹× °ËÅä
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ÀÚµ¿Â÷ ³×Æ®¿öÅ© ÅëÇÕ ½Ã½ºÅÛ °³³ä
¥². Pseudo MOST ÇÁ·ÎÅäÄÝ ¼³°è
¥³. °ÔÀÌÆ®¿þÀÌ ½Ã½ºÅÛ ±¸Çö
¥´. ½Ã½ºÅÛ ¼º´É ½ÇÇè
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ½ÇÇè
¥³. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ½ÉÀüµµ ÆÄÇü Á¤ÀÇ
¥². ½ÉÀüµµ ¹ÙÀÌ¿ÀÀÎ½Ä ¾Ë°í¸®Áò
¥³. ½ÇÇè ¹× °á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ½ÇÇè
¥². °á°ú ¹× ÅäÀÇ
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ½ÇÇè ¹× ¹æ¹ý
¥². °á°ú
¥³. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Àü±âÀÚµ¿Â÷ ÆÄ¿öÆ®·¹ÀÎ ¸ðµ¨¸µ
¥². EV ÄÄÆ÷³ÍÆ® ¼³°è
¥³. ½Ã¹Ä·¹ÀÌ¼Ç °á°ú ¹× °íÂû
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Discrete Wavelet Transform
¥². Unscented Particle Filter
¥³. ½Ç¿Ü Á¤¹Ð À§Ä¡ ÃßÁ¤ ½Ã½ºÅÛ
¥´. ½ÇÇè ¹× °á°ú
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ±¹³»¿Ü ¿¬±¸µ¿Çâ
¥². º»·Ð
¥³. ½ÇÇè
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ÀÌ·ÐÀû ¹è°æ
¥². Á¦¾ÈµÈ XOR-ACCÀÇ ½Å°æ¸Á ¾Ë°í¸®Áò
¥³. Á¦¾ÈµÈ XOR-ACCÀÇ ½ÇÇè ¹× ¼º´É Æò°¡
¥´. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². ÇÏÀ̺긮µå ¼¾¼­¸ðµâ ¾ÆÅ°ÅØÃ³
¥³. ¿þÀÌÅ©¾÷/½½¸³ ÇÁ·¹ÀÓ¿öÅ©
¥´. ±¸Çö ¹× ¼º´É ºÐ¼®
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. The Proposed Routing Protocol: ERPM
¥². The theoretical analysis of the ERPM
¥³. Performance Evaluation
¥µ. Concluding Remarks
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. The Proposed Cooperative Routing Protocol: CooRP
¥². The theoretical analysis of CooRP with outage probability
¥³. Performance Evaluation
¥´. Conclusion
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Á¦¾ÈÇÏ´Â ±â¹ý
¥². ½ÇÇè °á°ú
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². ±¸Çö°ú ¼³°è
¥³. ¼º´ÉÃøÁ¤ ¹× °á°ú
¥´. °á·Ð ¹× ÇâÈÄ °úÁ¦
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ±âÁ¸ÀÇ Å¬·¡½ºº° ¿Àµð¿À ¾ÚÇÁ Ư¡
¥². Á¦¾ÈÇÏ´Â D Class ¿Àµð¿À ¾ÚÇÁ¸¦ ÀÌ¿ëÇÑ ¼¼¶ó¹Í ÆòÆÇ ½ºÇÇÄ¿
¥³. D class ¿Àµð¿À ¾ÚÇÁÀÇ ¼¼¶ó¹Í ÆòÆÇ½ºÇÇÄ¿ ½Ã½ºÅÛ ±¸Çö
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². ¿ø°ÝûÁøÁø·á ½Ã½ºÅÛ ¼³°è
¥³. ±¸Çö ¹× °á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. Á¦¾ÈÇÑ ¾Ï º¹È£È­ ½Ã½ºÅÛ ¸ðµ¨
¥². ¾Ï¤ýº¹È£È­ ½Ã½ºÅÛ ±¸Çö
¥³. ½ÇÇè°á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². ºí·Î±× µ¥ÀÌÅÍ
¥³. Çѱ¹ ºí·Î±× °ø°£ÀÇ Æ¯¼º º¯È­ ºÐ¼®
¥´. Æ÷½ºÆ® »ý¼º ¹× ½ºÅ©·¦ °æÇ⠺м®
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². Á¦¾ÈµÈ M©÷-MAC ÇÁ·ÎÅäÄÝ
¥³. ¼º´É Æò°¡ ¹× ºÐ¼®
¥´. °á·Ð ¹× ÇâÈÄ ¿¬±¸ ¹æÇâ
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ¼öÁß Åë½Å¿¡¼­ÀÇ À½ÆÄ Àü´Þ
¥². ¼öÁß À½Çâ ¸ðµ©
¥³. ½ÇÇè
¥´. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². USN ¼­ºñ½º ½Äº° ü°è
¥³. USN ¼­ºñ½º À¶ÇÕ ¹× ¼º´É°³¼±
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °Å¸® Á¤º¸ÀÇ Çü½Ä°ú »ùÇøµ
¥². ¹«ÀÎ Â÷·®ÀÇ À§Ä¡ ÃßÁ¤
¥³. ½ÇÇè °á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. Introduction
¥±. Preliminary
¥². Related Work
¥³. Input Seed Refinement for Web Spam Filtering Algorithms
¥´. Performance Evaluation
¥µ. Conclusions
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². Á¦¾ÈµÈ ¾Ë°í¸®Áò
¥³. ¼º´É ºÐ¼® ¹× Æò°¡
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ARINC-429 ÇÁ·ÎÅäÄÝÀ» ÀÌ¿ëÇÑ Ç×°ø µ¥ÀÌÅÍ Àü¼Û ¹æ½Ä
¥². Á¦¾ÈÇÏ´Â ºñÇ൥ÀÌÅÍ Àü¼Û±â¹ý
¥³. ¸ðÀÇ ½ÇÇè
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³



Abstract
¥°. ¼­·Ð
¥±. Hydrodynamic HEMT ¼ÒÀÚ ½Ã¹Ä·¹À̼Ç
¥². Ç׺¹ Ư¼º ½Ã¹Ä·¹ÀÌ¼Ç °á°ú ¹× ºÐ¼®
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. °ü·Ã ¿¬±¸
¥². ÄÚµå¿öµå »ý¼ºÀ» À§ÇÑ ÄÚµù ±¸Á¶
¥³. ½ÇÇè ¹× °á°ú
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. LDPC ºÎÈ£ ¹× º¹È£ ¾Ë°í¸®µë
¥². ´ÙÁ߸ðµå LDPC º¹È£±â ¼³°è
¥³. ¼³°è°ËÁõ ¹× ¼º´ÉÆò°¡
¥´. °á·Ð
°¨»çÀÇ ±Û
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ¸ÖƼ µð½ºÇ÷¹ÀÌ ¼Û¼ö½Å ÀåÄ¡ ¼³°è °ËÁõ
¥´. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ±¸Á¶
¥². Á¦¾ÈÇÏ´Â ¹öÆÛ ±¸Á¶
¥³. LDO ¼±Çü ·¹±Ö·¹ÀÌÅÍÀÇ ¼³°è
¥´. Á¦ÀÛ ¹× ÃøÁ¤ °á°ú
¥µ. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ȸ·Î ±¸¼º ¹× µ¿ÀÛ ¿ø¸®
¥². ½ÇÇè °á°ú ¹× °íÂû
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. ȸ·Î ±¸¼º ¹× µ¿ÀÛ ¿ø¸®
¥². ½ÇÇè °á°ú ¹× °íÂû
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


Abstract
¥°. ¼­·Ð
¥±. º»·Ð
¥². ½ÇÇè
¥³. °á·Ð
Âü°í¹®Çå
ÀúÀÚ¼Ò°³


1. Introduction
2. Intra Prediction in H.264/AVC
3. Frequency Feature Analysis
4. Block Type Decision Algorithm
5. Experimental Results
6. Conclusion
7. Acknowledgment
References



1. INTRODUCTION
2. REVIEW OF HELS METHOD
3. PLANAR HELS
4. SIMULATION EXAMPLE
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. SNR ESTIMATION FOR PSK SCHEMES
3. SNR ESTIMATION FOR QAM SCHEMES
4. SIMULTION RESULTS
5. CONCLUSIONS
6. REFERENCES




1. Introduction
2. Approximated PDF for a Sum of Independent Nakagami Random Variables
3. Analysis of the Ber Performance of Partially Coherent EGC Diversity Receiver
4. Numerical Results
5. Conclusions
References


1. INTRODUCTION
2. PROBLEM DEFINITION
3. PROPOSED LOGIC CELL ARCHITECTURE
4. EVALUATION OF THE PROPOSED LIGIC CELL
5. RESULTS
6. CONCLUSIONS
7. REFERENCES


1. INTRODUCTION
2. SYSTEM CONFIGURATION
3. CONCLUSIONS
4. ACKNOWLEDGEMENT
5. REFERENCES



1. Introduction
2. A Realization Method of 3DTF
3. Conclusion
4. References





1. INTRODUCTION
2. GAUSSIAN PULSE FOR UWB
3. CMOS INVERTER
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGMENTS
7. REFERENCES


1. INTRODUCTION
2. SYSTEM MODEL
3.C. PERFORMANCE EVALUATION WITH VARIOUS NUMBERS OF CANDIDATES
4. PERFORMANCE EVALUATION WITH DIFFERENT COMBINATIONS OF ITERATION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Application of White LEDs
3. LED Markets
4. New LED lamps and displays by optical coupling of Plastic Fibers with LEDs arrays
5. Conclusion
6. Acknowledgements
7. Reference


1. Introduction
2. Method
3. Results
4. Discussion and Conclusion
Acknowledgements
References


1. Introduction
2. The Proposed Method
3. Experiment
4. Discussion
5. Conclusion
References


1. Introduction
2. Preliminary
3. Multiplication in GF(2m)
4. Architectures for Multiplexer-Based Multiplier in GF(2m)
5. Comparisons and Conclusions
Reference


1. INTRODUCTION
2. SFN IN NORDIC REQUIREMENT
3. FRAME SYNCHRONIZATION
4. PROPOSED FRAME SYNCHRONIZATION
5. SIMULATION RESULT
6. CONCLUSION
7. REFERENCES


1. INTRODUCTION
2. CIRCUIT CONFIGURATION AND OPERATION
3. CHARACTERISTICS OF MC-DCPLL
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES





1. Introduction
2. Pre-processing
3. Fuzzy Clustering and Neural Networks
4. Experiments
5. Head Models
6. Recognition Results
7. Conclusions
Appendix
References



1. INTRODUCTION
2. PROPOSED DCR WITH AIA SYSTEM
3. DESIGN PROCEDURE AND METHODOLOGY
4. DCR SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. CIRCUIT AND SIMULATION
3. EXPERIMENTAL AND CONSIDERATION
4. CONCLUSION
5. REFERENCES



1. Introduction
2. Theoretical Analysis
3. Numerical Results
4. Conclusions
References





I. Introduction
II. CID system
III. Conclusion
References


1. INTRODUCTION
2. PROPOSED SCHEME
3. PERFORMANCE COMPARISON
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Motion Estimation
3. Motion Estimation Architecture
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Previous works
3. Fundamental ideas
4. Water droplet movement model
5. Fast rendering method of water droplets
6. Rendering results
7. Conclusions
References


1. Introduction
2. Frequency Domain Method of Splitting Signal
3. Splitting ¥á-Rooting Enhancement in Wavelet Domain
4. Performance Measure of Enhancement
5. Experimental Results
6. Conclusion
References


¥°. INTRODUCTION
¥±. QUATERNARY LOGIC GATES
¥². SIMULATION RESULTS
¥´. CONCLUSION
References


1. Introduction
2. Construction of RC-LDPC codes
3. Optimize Degree Distribution of RC-LDPC codes
4. Numerical Result
5. Conclusion
6. Acknowledgement
7. References


1. INTRODUCTION
2. ALGORITHMIC ANALOGUE TO-DIGITAL CONVERSION
3. CURRENT INJECTION TECHNIQUE
4. IMPLEMENTATION
5. EXPERIMENTAL RESULTS
6. CONCLUSION
7. ACKNOWLEDGEMENTS
8. REFERENCES




1. INTRODUCTION
2. SVD-BASED THEOREM AND DESIGN
3. WEIGHTED-LEAST-SQUARES SVD
4. DESIGN EXAMPLE
5. CONCLUSION
REFERENCES



1. INTRODUCTION
2. PROPOSED CIRCUITS
3. Simulation results
4. CONCLUSIONS
5. REFERENCES


1. INTRODUCTION
2. PROBLEM STATEMENT
3. ACCURACY OF HYPOTHETIC ALTIMETRY
4. NUMERICAL RESULTS
5. CONCLUSION
6. REFERENCES



1. Introduction
2. VAD-Based Variable Filter Design
3. svd-Based VAD Algorithm
4. Design Example
5. Conclusion
References





1. INTRODUCTION
2. INPUT GENERATION AND COOLING SCHEMES
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGMENTS
6. REFERNECES


1. Introduction
2. PV SYSTEM MEASUREMENT
3. SYSTEM MODELING
4. Issues on Reliability improvement
5. Numerical Results
6. Conclusion
7. Acknowledgement
8. REFERENCES


1. Introduction
2. Adaptive Algorithms of The Proposed Equalizer
3. Proposed Equalizer Architecture and Simulation Results
4. Implementation Results
5. Conclusions
References


1. Introduction
2. View Interpolation in Disparity Domain
3. Disparity estimation using BP Algorithm
4. Proposed Disparity Estimation Algorithm
5. Experimental Results
6. Conclusion
Acknowledgement
References


1. Introduction
2. Backgournds
3. Proposed method
4. Experimental results
5. Conclusion
Acknowledgements
References


1. Introduction
2. Usual Processor Architecture
3. Proposed Processor Architecture
4. Programming Language
5. Experiments and Results
6. Conclusion
References


1. INTRODUCTION
2. METHODOLOGY
3. TEST RESULTS
4. CONCLUSIONS
5. REFERENCES


1. INTRODUCTION
2. LCD COLUMN DRIVER CIRCUIT
3. PROPOSED MFTHOD
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES




1. Introduction
2. Ground Detection Method
3. experimental Results
4. Conclusions
References


1. INTRODUCTION
2. AMBIGUITY OF ALTIMETRY
3. ANALYSIS OF ERRORS
4. DISSCUSSION
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. CURRENT DUAL-FREQUENCY ANTENNA DESIGN
3. DESIGN AIMS
4. DUAL-FREQUENCY ANTENNA DESIGN
5. SIMULATION
6. ANTENNA FABRICATION AND TESTING
7. CONCLUSION
8. REFERENCES



1. Introduction
2. OFDM System
3. CIRCULAR POLARIZATION CHARACTER
4. CP-OFDM SYSTEM
5. SIMULATION RESULTS
6. CONCLUSIONS
Acknowledgement
References





1. INTRODUCTION
2. PROBLEM FORMULATION
3. INTERCONNECT MODELING
4. GATE MODELING
5. EXPERIMENTAL RESULTS
6. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. Function of System
3. Layout and Performance Results
4. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. An extended systolic array
3. A two-square shape
4. Ex-SAs including two-square shapes
5. Conclusions
References


1. Introduction
2. Multi-view Depth Map Estimation
3. Depth Map Estimation Enhancing Temporal Consistency
4. Experimental Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Evaluation Methods
3. Experimental Data
4. A Brief Algorithm
5. Evaluation Result
6. Comparison with Histogram Equalization
7. Conclusions
Acknowledgement
References


1. Introduction
2. The Wavelet Transform
3. Simulation Results
4. Overall System Implemetation
5. Experiment Results
Acknowledgement
References


1. INTRODUCTION
2. SYSTEM CONFIGURATION
3. EXPERIMENT #1 : CONTROL OF ROBOT ARM
4. EXPERIMENT #2 : CHARACTER INPUT
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Architecture of TraNSIM
3. Case Study : IEEE 802.11n receiver
4. Conclusion
5. REFERENCES





1. Introduction
2. System Overview
3. Simulation Result



1. INTRODUCTION
2. DETECTION PROBLEMS OF A WEAK SIGNAL
3. PROPOSED DETECTION METHOD
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. ANTI-COLLISION IN THE ISO 18000-6 THPE B
3. PROPOSED METHOD
4. SIMULATION RESULTS AND PERFORMANCE COMPARISION
5. CONCLUSION
6. REFERENCES



1. Introduction
2. Three-dimensional placement problem
3. Placement algorithm
4. Experiment
5. Conclusion
References





1. Introduction
2. Results and Discussion
3. Conclusions
Acknowledgments
References


1. INTRODUCTION
2. DSMTCMOS CIRCUIT
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Power-line phase measurement based on the recursive implementation of sliding-DFT
3. Simulations and Results
4. Conclusions
References


1. Introduction
2. Proposed Method
3. Experimental Results
4. Conclusions
Acknowledgements
References


1. Introduction
2. Approach
3. Moving direction detection
4. Experiment
5. Conclusion
References


1. Introduction
2. Time-Varying LP analysis
3. PLC algorithm
4. Simulation results
5. Conclusion
Appendix A Speech data
References


1. INTRODUCTION
2. THE PROPOSED SYSTEM
3. HAUSDORFF NEURAL NETWORK
4. THE EXPERIMENTAL RESULTS
5. REFERENCES


1. INTRODUCTION
2. ADIABATIC LOGIC
3. SIMULATION
4. SUPPLY CLOCK GENERATION
5. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES





1. Introduction
2. Relationship between Phase Noise and Loaded Q
3. Derivation of equation to obtain the loaded Q
4. Conclusion
Acknowledgement
References



1. INTRODUCTION
2. 3D GRAPHIC GEOMETRY PROCESS
3. PROGRAMMABLE VERTEX SHADER ARCHITECTURE RESEACH AND DESIGN
4. VERIFICATION SYSTEM AND PERFORMSNCE ANLYSIS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. PROBLEM DEFINITION
3. DESIGN OF A GA-SOC SYSTEM
4. SIMULATION, IMPLEMENTATION, AND VALIDATION
5. CONCLUSIONS
6. ACKNOWLEDGEMENTS



1. Introduction
2. Ficker Noise In CMOS Mixer
3. Mixer Design
4. Mesaurement Results
5. Conclusion
References




1. INTRODUCTION
2. OVERVIEW OF CABAC ENCODING
3. THE PROPOSED ARCHITECTURE
4. IMPLEMENTATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. ERROR-CONTROL TECHNIQUES
3. CROSS-LAYER ERROR-CONTROL FRAMEWORK
4. MATHEMATICAL ANALYSIS
5. PERFORMANCE RESULTS
6. CONCLUSIONS AND FURTHER WORKS
7. REFERENCES


1. Introduction
2. Sorting Method Using Calendar Memories
3. Simulations
4. Conclusions
References


1. Introduction
2. Video Ontology System
3. Simulation
4. Conculusion
References


1. Introduction
2. DCT Coefficient Signs and JPEG Codestream Structure
3. Proposed Method
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Noise Reconstruction Method
3. Noise Reconstruction System with Feedback Path
4. Simulation Results
5. Conclusions
References


1. INTRODUCTION
2. RELATED WORKS
3. PROPOSED UEP OF SCALABLE VIDEO CODING WITH CROSS-LAYER APPROACH
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. CIRCUIT ARCHITECTURE AND SIMPLIFIED ANALYSIS
3. EFFECT OF THE SIZE OF THE NMOS
4. EXPERIMENTATION RESULT AND CONCLUTION
5. ACKNOWLEDGEMENT
6. REFERENCES





1. INTRODUCTION
2. FACIAL FEATURE EXTRACTION
3. CLASSIFICATION OF FACIAL FETURES
4. EVALUATION FUNCTION FOR FACE ANALYSIS
5. EXPERIMENTAL RESULTS
6. CONCLUSIONS
7. REFERENCES


1. Introduction
2. Related Works
3. XSNP (eXtended SNP)
4. AHB-to-XSNP Protocol Converter
5. Simulation and Verification
6. Conclusion
7. ACKNOWLEDGEMENT
8. REFERENCES


1. INTRODUCTION
2. STRATEGY FOR DOWNSIZING A CIRCUIT SCALE
3. STRUCTURE OF PROPOSED MULTIPIERS
4. ESTIMATIONS OF EFFECTS OF DOWNSIZING
5. CONCLUSIONS
6. ACKNOWLEDGEMENTS
REFERENCES



1. Introduction
2. Related Works
3. Link allocation for Premium Services
4. numerical Results and Discussions
5. Conclusions
References





1. Introduction
2. Frame Memory of H.264/AVC
3. Proposed Method
4. Simulation Results
5. Conclusion
References


1. INTRODUCTION
2. SYSTEM MODEL AND PROBLEM FORMULATION
3. PROPOSED ALGORITHM
4. SIMULATIONS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Noise Reduction Method
3. Simulation Results
4. Conclusions
References


1. Introduction
2. Fundamentals of 3D reconstruction and Reprojection
3. Fast Reprojection using TSFB
4. Simulation
5. Conclusion
References


1. Introduction
2. Conventional Method
3. Proposed Method
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Combiner
3. Dsign of OTA using Combiners
4. Simulation Results
5. Application to an Equalizer
6. Conclusions
References


1. INTRODUCTION
2. MODELING AND ANALYSIS
3. NUMERICAL RESULTS
4. CONCLUSIONS
5. REFERENCES


1. Introduction
2. Circuit Configuration
3. Simulation Results
4. Conclusion
Acknowledgement
References





1. Introduction
2. Internet-based servo system
3. Remote Control System
4. Simulations and Experiments
5. Conclusions
References



1. INTRODUCTION
2. CHAOTIC CIPHER
3. Proposal of Chaotic Block Encryption Scheme
4. SIMULATION RESULTS & SECURITY ANALYSIS
5. CONCLUSION
6. REFERNECES


1. INTRODUCTION
2. FUNDAMENTALS OF ELLIPTIC CURVE
3. X-TWIST AND Y-TWIST FOR E(X, Y)=Y©÷-X©ø-B, B¡ô Fsup{*}sub{Q}
4. DETERMINING THE ORDERS OF
5. REFERENCES



1. Introduction
2. Problem Formulation
3. Review of the Conventional Heuristic CSE Techniques
4. Proposed Heuristic CSE Method
5. Design Examples
6. Conclusions
References





1. INTRODUCTION
2. MULTI INPUT FUZZY RULES EMULATED NETWORK
3. SYSTEM IDENTIFICATION SIMULATION RESULTS
4. CONCLUSION
Acknowledgment
5. REFERENCES


1. INTRODUCTION
2. THEORITICAL BACKGROUND
3. PROPOSED AUDIO WATERMARKING
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. A Kn-to-Kp / Kp-to-Kn converting circuit
3. Simulation Results
4. Rail-to-Rail OTA using a Kn-to-Kp converting circuit
5. Conclusion
References


1. Introduction
2. MIMO Systems and STTC Structures
3. The Proposed Algorithm
4. Performance of the Algorithm
Acknowledgment
References


1. Introduction
2. Rayleigh fading channel
3. BER Measurement of the System
4. Results and Discussion
References


1. Introduction
2. Hyperbolic function circuits
3. OTA design
4. Transconductance and power dissipation
5. SPICE simulation
6. Conclusion
References


1. INTRODUCTION
2. RELATED WORKS
3. SCALABLE AND ROBUST FINGERPRINTING SCHEME
4. ANALYSIS AND EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. RELATED WORK
3. SYSTEM'S ARCHITECTURE
4. MAP GENERATION ALGORITHM
5. ANSWER MATCHING IN THE GUESSING GAME
6. RESULTS AND DISCUSSIONS
7. CONCLUSION
8. REFERENCES





1. Introduction
2. IPv6-IPv4 Protocol Translator
3. Performance Evaluation of S/W Translator
4. Techniques for Performance Improvement
5. H/W IPv6-IPv4 Protocol Translator
6. Conclusion



1. INTRODUCTION
2. PRELIMINARIES
3. PERFORMANCE ANALYSIS
4. CONCLUSIONS
5. REFERENCES


1. INTRODUCTION
2. CONVENTIONAL SCHEME FOR JP2
3. PROPOSED SCHEME
4. SIMULATION
5. CONCLUSIONS
REFERENCES



1. Introduction
2. AES Overview
3. AES Crypto-processor Implementation
4. Synthesis and Simulation
5. Conclusions
References





1. INTRODUCTION
2. ANALYSIS AND INTEGRATRION OF SPATIOTEMPORAL FEATURES
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. MUSIC WATERMARK SUITABLE FOR MP3 COMPRESSION
3. EXPERIMENT
4. IMPROVEMENT OF ROBUSTNESS FOR MP3 COMPRESSION
5. CONCLUSION
REFERENCES


1. Introduction
2. Circuit Composition
3. Analysis
4. Considerations
5. Conclusion
References


1. Introduction
2. AP-MRT-CVQ
3. BDBF
4. Received Signal Detection
5. Computer Simulation
6. Conclusion
References


1. Introduction
2. Related Improved Schemes for the IEEE 802.11e
3. The Improvement Method of AEDCF : M-EDCF
4. Simulation Model Description and Numerical Results
5. Summary
[Reference]


1. Introduction
2. Basic Principle and Circuit Configuration
3. Simulation Results
4. Application for Analog Filter
5. Conclusion
References


1. INTRODUCTION
2. EMBEDDING OF WATERMARK
3. EXTRACTION OF WATERMARK
4. EXPERIMENTAL EXAMPLE
5. CONCLUSION
REFERENCES


1. INTRODUCTION
2. RELATED WORK
3. FORMAL CONCEPT ANALYSIS
4. COLLABORATIVE RECOMMENDING BASED ON FCA TO ANSWER DEFINITION QUESTION
5. THE ALGORITHM FOR OUR COLLABORATIVE RECOMMENDER
6. EVALUATION
7. CONCLUSION
8. ACKNOWLEDGEMENTS
9. REFERENCES




1. Introduction
2. Power Consumption in CMOS Circuits
3. Related Works
4. Power Model at Behavioral Level
5. Proposed Power Estimation System
6. Experimental Results
7. Conclusion
Acknowledgements
References


1. INTRODUCTION
2. RELATED WORK
3. FEATURES OF XBREVITY
4. COMPRESSION TECHNIQUES IN XBREVITY
5. EXPERIMENTAL EVALUATION
6. CONCLUSIONS
7. REFERENCES


1. INTRODUCTION
2. RELATED WORK
3. STABIRITY CONDITION AND EXPERIMENT SYSTEM
4. ROBOT CONTROL SYSTEM
5. EXPERIMENTS
6. RESULTS
7. DISCUSSION AND CONCLUSION
8. REFERENCES



1. Introduction
2. Mathematical Analysis of 8PSKBER
3. Single Parameter Variation(SPV)
4. Multiple Parameter Variation(MPV)
5. Identifying the Most Critical parameters
5. conclusion
6. References





1. INTRODUCTION
2. VISION-BASED PRIMITIVE SPATIAL DATA GENETATION
3. GENERATION OF PRIMITIVE-ST AND ST CONTEXT
4. EXPERIMENTAL RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. IEEE 802.11 Handoff Algorithms
3. AsyneScan(Adaptive Synchronized Scanning)
4. Performance Analysis
5. Conclusion and Future Work
6. REFERENCES


1. Introduction
2.Switched-Opamp(Conventional circuits)
4.Switched-Opamp(Proposed Circuit)
5. Simulation Result
6.Conclusion
Reference


1. Introduction
2. Jammers
3. Results and Discussion
4. References


1. Introduction
2. Proposed System
3. Computer Simulated Results
4. Conclusion
References


1. Introduction
2. Classical Method
3. Proposed Method
4. Simulations
5. Conclusion
References


1. INTRODUCTION
2. UWB COMMUNICATION SYSTEM
3. SIMULATION DESCRIPTION
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. OVERALL NETWORK DESIGN ARCHITECTURE
2. ADSL SUBCRIBER TRAFFIC
3. METRONET TRAFFIC
4. VIRTUAL TRUNK
5. ADSL ACCESS SYSTEM
6. INTRANET MPLS-BASED 1.2/1.3 INTEGRATION SOLUTION INTERCONNECT SERVICE
7. CONCLUSION
8. REFERENCES





1. Introduction
2. Method of the Interpolation
3. Reduce the Expanded Memory
4. Implementation Results
5. Conclusion
References



1. INTRODUCTION
2. SIP IN UFC WITH STUN
3. CONCLUSION
4. ACKNOWLEDGEMENT
5. REFERENCES


1. INTRODUCTION
2. EVALUATION OF INDEXING APPROACHES
3. SANSARN LOOK!: SYSTEM ARCHITECTURAL DESIGN
4. CONCLUSIONS
5. REFERENCES



1. Introduction
2. Circuit Descriptions
3. Application
4. Simulation Results
5. Conclusions
6. Acknowledgements
References





1. INTRODUCTION
2. TRAFFIC ANALYSIS
3. TRAFFIC OBSERVATION
4. CALCULATION OF AUTOCORRELATION FUNCTIONS
5. HEAVY TRAFFIC RESULT
6. CONCLUSION
7. REFERENCES


1. Introduction
2. I©÷D©÷RS
3. Defuzzification
4. Experiments and Results
5. Conclusion
References


1. Introduction
2. ¡®Personalized¡¯ Facial Expression Recognition
3. Feature Selection by Histogram of Input Linguistic Nodes
4. Numerical Results
5. Concluding Remarks
Acknowledgement
References


1. Introduction
2. Multimode Scenario with Dual-band Operation
3. Analysis
4. Numerical Result
5. Conclusion
Reference


1. Introduction
2. Dimensionality Analysis of Topology and Evaluation Model
3. Performance Evaluation Metric and Cross Layer Topology Control Scheme
4. Simulations
5. Conclusions
Acknowledgments
References


1. Introduction
2. Quantized COP trajectory extraction
3. Person recognition by HMM-based recognizer
4. Conclusion
Acknowledgment
References


1. Introduction
2. Circuit descriptions
3. Simulation results and Discussion
4. Conclusions and future subject
5. References


1. INTRODUCTION
2. ESTIMATES OF ASYMMETRY LEVEL
3. MEASUREMENTS
4. ASYMMETRY ESTIMATE BETWEEN FORWARD AND RETURN PATHS
5. VERIFICATION OF THE ASYMMETRIC MODEL
6. CONCLUSIONS
7. REFERENCES





1. Introduction
2. Proposed Circuit
3. Simulation Results
4. Experimental Results
5. Conclusions
Acknowledgment
References



1. INTRODUCTION
2. FEATURES EXTRACT
3. MATCHING
4. MAP BUILDING
5. MAP BUILDING PROCESS BY SLAM
6. EXPERIMENTS AND RESULT
7. CONCLUSION
8. REFERENCES


1. INTRODUCTION
2. SPATIAL SEGMENTATION METHOD FOR DWT AND CACHE MEMORY
3. METHOD AND EVALUATION
4. SIMULATION
5. CONCLUSION
6. REFERENCES



1. Introduction
2. Circuit Description and Operation
3. Temperature-Stable Linear OTA
4. Experimental Results
5. Conclusions
References





1. INTRODUCTION
2. RELATED WORK
3. EXPERIMENTAL RESULT USING GLOMOSIM
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. INTRA PREDICTION FOR H.264
3. PROPOSED ALGORITHM
4. EXPERIMENT RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Fuzzy Baysian Classifier
3. Experiments and Results
4. Conclusions
References


1. Introduction
2. Related Work
3. Virtual-Cell Frequency Reuse Scheme
4. Performance Evaluation
5. Conclusion
Acknowledgment


1. Introduction
2. Signal Model and Conventional Method
3. Proposed Methods
4. Simulation Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Reinforcement Learning
3. Trailer-Truck Steering Problem
4. Application of Reinforcement Learning
5. Analysis of the Acquired Skills
6. Conclusions
References


1. INTRODUCTION
2. RELATED WORKS
3. PROPOSED JPEG CODING SCHEME FOR HIGH FIDELITY IMAGES BY HALFTONING LESS SIGNIFICANT EXTRA BITS
4. EXPERIMENTAL RESULT
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. RELATED WORK
3. VIRTUAL ROUTING AT LAYER 3
4. EXPERIMENT ENVIRONMENT AND SCENARIOS
5. EXPERIMENTAL RESULTS
6. CONCLUSIONS AND FUTURE WORK
7. REFERENCES





1. Introduction
2. Fundamental Reversible Logic Primitives
3. A New Regular Reversible Structure
4. Conclusions
References


1. INTRODUCTION
2. MESH INSPECTION WITH GABOR FILTER
3. ANALYSIS OF CENTER FREQUENCY
4. SIMULATIONS
5. SUMMARY
6. REFERENCES


1. INTRODUCTION
2. OUTLINE OF THE PROPOSED METHOD
3. RENEWAL OF BACKGROUND IMAGE
4. EXTRACTION OF GESTURE REGION
5. EXPERIMENTAL EXAMPLE
6. CONCLUSION
REFERENCES



1. Introduction
2. WLAN Security
3. WLAN Stations Classification
4. WLAN AP Configurations
5. Conclusions
References





1. INTRODUCTION
2. METHOD
3. RESULTS AND DISCUSSION
4. CONCLUSIONS
5. REFERENCES


1. INTRODUCTION
2. RELATE WORK
3. A NEW SUFFIX TREE CLUSTERING ALGORITHM
4. EXPERIMENTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Reinforcement Learning
3. Proposed Method
4. Experiment
5. Conclusion
References


1. Introduction
2. System Model
3. Performance Analysis
4. Simulation Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. System model
3. Closed form BER expression
4. Simulation results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Watermark Embedding Scheme
3. Watermark Extraction
4. Experimental Results
5. Conclusion
6. Acknowledge
References


1. INTRODUCTION
2. THE PROPOSED SCHEME
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
REFERENCES


1. Introduction
2. Extraction of the object region
3. Tracking moving object
4. Experiment
5. Conclusion
6. REFERENCES




1. INTRODUCTION
2. DATA COLLECTION
3. EXPERIMENT CONDICTION and TASKS
4. RESULT
5. CONCLUSION
References



1. INTRODUCTION
2. CIRCUIT DESCRIPTION
3. PROPOSED CF-BASED CURRENT-MODE MSO CIRCUIT
4. EFFECTS OF THE CF NON-IDEALITY ON OSCILLATION FREQUENCY
5. SIMULATION RESULTS
6. CONCLUSION
7. REFERENCES


1. INTRODUCTION
2. FRAME SYNCHRONIZATION SCHEME
3. FREQUENCY OFFSET CORRECTION
4. SIMULATION RESULTS
5. Conclusion
6. ACKNOWLEDGEMENT
7. REFERENCES



1. INTRODUCTION
2. ARCHITECTURE of H.264 DECODER
3. PIPLINE DESIGN AND CYCLE ESTIMAIOTN
5. CONCLUSION
6. REFERENCES





Introduction
I. LAPLACIANFACES METHOD
II. LAPLACIANFACES AND NEURAL NETWORKS
III. EXPERIMENTAL RESULTS AND DISCUSSIONS
IV. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. DESIGN OF FEED EQUIPMENT
3. HIGH POWER HANDLING
4. NUMERICLA AND EXPERIMENTAL RESULTS
5. CONCOUSIONS
6. REFERENCES


1. Introduction
2. ROI Detection
3. Watermarking Algorithm
4. Experimental Results
5. Conclusion
References


1. Introduction
2. Framed and Slotted ALOHA
3. Cognizance Ratio
4. Optimal Framed and Slotted Structure
5. Numerical Examples
6. Conclusions
References


1. Introduction
2. Relative works
3. Proposed MAC protocol
4. Simulation results
5. Conclusion
References


1. Introduction
2. Verifying the Watermark
3. The Experimental Results
4. Discussions
5. Conclusions
References


1. INTRODUCTION
2. THE STRUCTURE OF PROPOSED ANTENNA
3. DESIGN OF AN ANTENNA FOR T-DMB AND SIMULATED RESULTS
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. FEATURES OF CANCER CELLS
3. MATERIALS AND METHODS
4. RESULTS AND DISCUSSION
5. CONCLUSION
6. REFERENCES





1. Introduction
2. Multi-Carrier SS System
3. ALGORITHMS
4. Equalizer Systems with multi-detector based on partitioning Technique
5. SIMULATION RESULTS
6. CONCLUSIONS
References



1. INTRODUCTION
2. DEVELOPED MEASUREMENT SYSTEM
3. MEASUREMENT OF 2D SOUND PRESSURE DISTRIBUTION
4. MEASUREMENT OF 3D SOUND PRESSURE DISTRIBUTION
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. CIRCUIT DESCRIPTION
3. PROPOSED CURRENT-MODE KHN BIQUAD FILTER USING CDTAS
4. NON-IDEAL CASE
5. SIMULATION RESULTS
6. CONCLUSIONS
7. ACKNOWLEDGEMENT
8. REFERENCES



1. Introduction
2. Firing Squad Synchronization Problem
3. An Efficient Mapping Scheme for Embedding 1-D Generalized Synchronization Algorithm onto 2-D Arrays
4. Conclusions
References





1. Introduction
2. Privacy Conscious Video Communication System
3. Signal processing by Proposed method
4. Experimental Results
5. ACKNOWLEDGEMENTS
6. REFERENCES


1. Introduction
2. Coplanar Waveguide antenna and U-slot techinque
3. Antenna design
4. Result
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Proposed method
3. Simulations
4. Conclusions
References


1. Introduction
2. Conventional coded diversity techniques
3. Proposed method
4. Simulation results
5. Conclusion
References


1. Introduction
2. Fundamentals
3. Main Proposal
4. Examples
5. Conclusion
References
Appendix


1. Introduction
2. Proposed watermarking
3. Image quality assessment based on HVS
4. Experimental results
5. Conclusion
References


1. INTRODUCTION
2. PHYSICAL OPTICS FORMULATION
3. RADIATION PATTERN SYNTHESIS
4. PRACTICAL APPLICATION
5. SIMULATION RESULT
6. CONCUSIONS
7. REFERENCES


1. INTRODUCTION
2. ERROR PERFORMANCE FOR SATELLITE SYSTEMS
3. AVERAGE NUMBER OF ERRORS PER BURST
4. CONCLUSIONS
6. REFERENCES





1. Introduction
2. Micro Gas Sensor Fabrication Process
3. Heat Transfer Simulation of Gas Sensor
4. Results
Acknowlegement
References


1. INTRODUCTION
2. BASIC CONCEPT
3. PROPOSED METHOD
4. EXPERIMENTAL RESULTS
5. DISCUSIONS
6. CONCUSIONS
7. REFERENCES


1. INTRODUCTION
2. UWB PULSE AND EVOMA
3. SIMULATION
4. CONCLUSION
5. Acknowledgement



1. Introduction
2. Describing the Radio System Noise Properties
3. Calculation of Characteristics of the Radio Links for Deep Space Communications
4. Accounting for the EP Influence
5. Conclusion
References





I. INTRODUCTION
II. SYSTEM MODEL
III. SIMULATION RESULTS AND DISCUSSION
IV. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


1. INTRODUCTION
2. METHOD OF ANALYSIS
3. NUMERICAL RESULTS
4. CONCLUSION
REFERENCES


1. Introduction
2. Background
3. Proposed Method
4. Experimental Results and Discussion
5. Conclusions
6. Acknowledgements
References


1. Introduction
2. Mechanical element of ¡®chain¡¯
3. Hierarchy of families of chains
4. Compiling process of PLIB dictionary
References


1. Introduction
2. Target Motion and Rehabilitation Method
3. Rehabilitation Support System with Force Feedback
4. Evaluation of Feedback Function
5. Conclusion and Future Works
References


1. Introduction
2. Location Definition
3. Virtual Area Concept Based Estimation
4. Performance Evaluation
5. Conclusion
References


1. INTRODUCTION
2. PASCAL MATRIX FOR BILINEAR TRANSFORMATION
3. THE FREQUENCY TRANSFORMATION
4. DESIGN EXAMPLES
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. EXPERIMENTAL SET-UP
3. TEST PROCEDURES
4. RESULT
5. CONCLUSION
6. REFERENCES





1. Introduction
2. Frequency-Diversity in Adaptive Filtering
3. Performance Analysis
4. Simulation Results
5. Conclusions
References



1. INTRODUCTION
2. SYSTEM MODEL
3. Design of the Iterative Receiver with joint Channel Estimation and Parameter Estimation of the Receiver
4. SIMULATIONS RESULTS
5. References


1. INTRODUCTION
2. RELATED WORK
3. DESIGN ARCHITECTURE
4. EXPERIMENTAL RESULTS
5. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. The Approach
3. Simulation Study
4. Conclusion
References





1. INTRODUCTION
2. PORTABLE GAS SENSING SYSTEM
3. TEST RESULTS AND DISCUSSION
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. SYSTEM MODEL
3. I/Q IMBALANCE ESTIMATION AND EQUALIZATION
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT


1. Introduction
2. Shifting of basis vectors
3. Ideal puncturing pattern
4. Application to TFCI coding
5. Conclusion
Acknowledgement
References


Introduction
A Prediction Tool with Computational Approach
Experiment
Result and Discussion
References


1. Introduction
2. Simulated Annealing: SA
3. Parallel SA
4. Experimental Evaluation
5. Conclusion
References


1. Introduction
2. System Description
3. The Proposed Approach
4. Simulation Results and Discussion
5. Acknowledgment
References


1. INTRODUCTION
2. REDUCED-DELAY DCSK UWB SYSTEM
3. SIMULATION RESULTS
4. CONCLUSION
5. ACKNOWLEDGMENTS
6. REFERENCES


1. INTRODUCTION
2. CONCEPT AND THEORY
3. SYSTEM DESIGN
4. EXPERIMENTAL RESULTS
5. SUMMARY
6. REFERENCES





1. Introduction
2. Structure and Features of the EDOCR
3. DSP Techniques of the EDOCR
4. Conclusion
References



1. Introduction
2. Architecture
3. Circuit Design
4. Simulation results
5. Conclusion
Acknowledgment
References


1. INTRODUCTION
2. DESIGN CONCEPT
3. APPROACH
4. DESIGN IMPLEMENTATION AND FINE-TUNING
5. READ RANGE MEASUREMENTS
6. CONCLUSION
7. REFERENCES



1. Introduction
2. Preliminary
3. A New Hybrid Priority List
4. Experimental Results and Discussions
5. Concluding Remarks
References





1. INTRODUCTION
2. CIRCUIT STRUCTURE
3. THEORETICAL ANALYSIS
4. SIMULATION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Environment Model in Multistatic Sonar
3. Target Detection and Sensor Arrangement
4. Simulation
5. Conclusion
6. References


1. Introduction
2. System Model
3. Receiver Structure and Performance Analysis
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Target System and Program model
3. The RC-OS Server
4. Evaluation
5. Conclusions
References


1. INTRODUCTION
2. Hy-DiSC PROCESSOR
3. PROCESSING FLOW
4. EVALUATION
5. CONCLUSION
Acknowledgement
References


1. Introduction
2. PN State Estimation Scheme
3. Probability Analysis
4. Average Acquisition Time
5. Simulation and Results
References


1. INTRODUCTION
2. PRINCIPLE OF QUARTZ CRYSTAL MICROBALANCE
3. LOW COST QCM SYSTEM
4. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. CIRCUIT DESCRIPTION AND OPERATION
3. CMOS OTA
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES





1. INTRODUCTION
2. EDGE-BASED SPATIAL DESCRIPTOR
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCE
ACKNOWLEDGEMENT


1. INTRODUCTION
2. PREVIOUS WORK
3. PROPOSED READER ANTI-COLLISION ALGORITHM
4. PERFORMANCE ANALYSIS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. RFID TAG ANALOG CIRCUIT DESIGN
3. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES



1. Introduction
2. Detection & Estimation
3. Performance Analysis
4. Conclusion
References





1. INTRODUCTION
2. ALGIBRAIC TRANSFORMATION BETWEEN THE EXTENDED CANTILEVER MODLE AND THE N-PORT MODEL
3. ANALYSIS OF OPERATING MODE BOUNDARIES
4. RESULTS AND DISCUSSIONS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. SYSTEM CONFIGURATION
3. METHODS AND DISCUSSION
4. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. W-CDMA system
3. Spreading and multiplexing
4. Computational complexity
5. Conclusion
References


1. Introduction
2. Literature
3. Applying web based on-off line collaborative learning system
4. Conclusion
Reference


1. Introduction
2. The Necessity of Language Identification and the Data Formats
3. Two Methods for Language Identification
4. Experimental Results
5. Concluding Remarks
6. Acknowledgement
References


1. Introduction
2. Preliminaries
3. Analysis and Design of Fuzzy Controller
4. Example and simulation
5. Conclusion
References


1. INTRODUCTION
2. CIRCUIT OF QRS DETECTOR
3. OPTIMIZING QRS DETECTOR
4. SIMULATION RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. ILLUSTRATION
8. REFERENCE


I. Introduction
II. The Optimal scheduling algorithm for low power
III. The dynamic Voltage Selection
IV. Experimental Results
V. Conclusion
References





1. Introduction
2. The geometric information in an image
3. Extraction of moving object and feature points
4. Experiment Result
5. Conclusion
Acknowledgement
References



1. INTRODUCTION
2. ANTI-COLLISION METHOD IN ISO 18000-6 TYPE C
3. PROPOSED ANTI-COLLISION METHOD
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. OVERVIEW OF THE RECONFIGURABLE HARDWARE PLATFORM
3. INTERECTUAL PROPERTIES FOR RICE
4. THE IMPROVEMENT OF THE PARTIAL DYNAMIC RECONFIGURABLE SYSTEM ON RICE
5. THE IMPLEMENTATION OF THE DSP-BASED SYSTEM ON RICE
6. CONCLUSION
7. REFERENCES



1. Introduction
2. Proposed Current Reference Circuit
3. Bias Voltage Generator
4. Current having Positive Temperature Coefficient
5. Current having Negative Temperature Coefficient
6. Simulation Results
7. Conclusion
References





1. INTRODUCTION
2. MODELING OF DC-DC CONVERTERS
3. SIMULINK MODELS AND RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. The Concept of the Holding Mechanism
3. Experimental Details
4. Basic formula
5. Experiment Results and Discussions
5. Conclusions
6. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. THE BASIC CIRCUIT OF MVCM
3. FFT PROCESSOR CIRCUIT
4. MULTIPLE-VALUED HYBRID TYPE FFT DESIGN
5. CONCLUSION
6. REFERENCE


1. Introduction
2. Preliminaries
3. Design of GAs and Parallelization
4. Experimental Evaluation
5. Conclusion
References


1. Introduction
2. Decision and realization of massage force
3. Experiment
4. Discussion
5. Conclusion
References


1. Introduction
2. Concepts
3. Fabrication
4. Measurement
5. Conclusion
6. Acknowledgements
7. References


1. INTRODUCTION
2. OVERDRIVE TECHNIQUE
3. PROPOSED ARCHITECTURE
4. EXPERIMENTAL RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. DESIGN OF ACTIVE INDUCTOR
3. IR LNA CIRCUIT DESIGN
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES





2. A Simple Problem Formulation
3. The Solution
4. Simulation Results
5. Conclusion
References



1. INTRODUCTION
2. VIDEO PROCESSING ALGORITHM
3. VLSI ARCHITECTURE DESIGN
4. VLSI IMPLEMENTATION DESIGN
5. CONCLUSION
6. ACKNOWLEDGMENT
7. REFERENCES


1. INTRODUCTION
2. FUNDAMENTAL ALOGRITHM
3. DESIGN AND PERFORMANCE
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Meta-Web Services Founational Aspects
3. Meta-Web Services Configuration
4. Meta-Web Services System
5. Conclusions
References





1. INTRODUCTION
2. CIRCUIT ANALYSIS
3. CIRCUIT MODELING PROCEDURE
4. STRUCTURE DESIGN
5. CONCLUSION


1. Introduction
2. Overall Architecture
3. Imolementation
4. Experimental Results
Acknowledgments
References


1. Introduction
2. Piecewise Linear Onto Map
3. Realization of Chaotic Sequences with Finite Bits
4. Method for Generation of Maximal-Period Sequences
5. Conclusion
Acknowledgement
References


1. Introduction
2. Optimal design of MCM circuit
3. Proposed method
4. Evaluation
5. Conclusions
acknowledgment
References


1. Introduction
2. Descriptive Examples
3. Formal Definition
4. Characteristics of Instance Graphs
5. Concluding Remarks
Acknowledgement
References


1. Introduction
2. Problem Formulation
3. Stabilizing Controller Design
4. Conclusions
Acknowledgement
References


1. INTRODUCTION
2. PROPOSED LOW POWER FLIP-FLOP
3. SIMULATION RESULTSAND COMPARISON
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. CIRCUIT DESIGN
3. FABRICATION AND MEASUREMENT OF THE BROADBAND CASCODE AMPLIFIER
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Network Display Device
3. Implement of Network Display Server
4. Experimentation of a Network Display Server
5. Discussion and Conclusion
References


1. INTRODUCTION
2. A FLOATING-POINT FORMAT
3. FLOATING-POINT ADDITION
4. DATA-DEPENDENCE NORMALIZATION
5. PERFORMANCE ANALYSIS
6. EXPERIMENTAL RESULTS
7. CONCLUSIONS
8. REFERENCES




1. INTRODUCTION
2. HNS DESCRIPTION LANGUAGE
3. MODEL CHECKING SERVICES WITH SPIN
4. CASE STUDY
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Protocol
3. Data Link
4. Performance Analysis
5. Conclusions
Acknowledgements
References





1. INTRODUCTION
2. DESIGN AND ANALYSIS
3. SINGLE-ENDED FET FREQUENCY DOUBLER
4. EXPERIMENT AND MEASURED RESULTS
5. CONCLUSION
6. REFERENCES


I. INTRODUCTION
II. OVERVIEW of HPi SYSTEM
III. PROPOSED VISI ARCHITECTURE
III. SIMULATION RESULTS
V. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. ILC for Feedback Systems
3. DLC for Feedback Systems
4. Simulation Results
5. Conclusion
References


2. Methodologies of Morphometrics
3. Shape Measurement and Morphometrics Treatments
4. Kansei evaluation experiment
5. Cluster analysis of shape
6. Principal Component Analysis of Shape
References


1. Introduction
2. Related work
3. Anomaly Detection
4. Probabilistic Properties of HMMs
5. Implementation
6. Experimental Results
7. Conclusion
References


1. Introduction
2. Tangent-Cutting Controller(TCC)
3. Experiment & Results
4.Conclusion
References
Acknowledgements


1. INTRODUCTION
2. SYSTEM FRAMEWORK
3. EFFECT OF CHANNEL ESTIMATION ERROR
4. PF SCHEDULING ROBUST TO INCORRECT CHANNEL INFORMATION
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. THE OPERATION PRINCIPLE OF LOW POWER RF FRONT-END
3. THE DESIGN OF LOW POWER RF FRONT END
4. CONCLUSION
5. CKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. General Instructions
3. Experiment result
4. Conclusion
References


1. INTRODUCTION
2. TEST PATTERN GENERATION
3. FAULT SIMULATION
4. CONCLUDING REMARKS
5. REFERENCES




1. INTRODUCTION
2. LIMITATION OF ASYNCHRONOUS BUS DESIGN
3. ASYNCHRONOUS COMBINATIONAL CIRCUITS DESIGN
4. A DESIGN OF ASYNCHRONOUS SYSTEM BUS FOR ASYNCHRONOUS CIRCUITS
5. SIMULATION RESULT
6. CONCLUSION
7. ACKNOWLEDGEMENT
8. REFERENCES


1. Introduction
2. Fuzzy Modeling of Chaotic System
3. Fuzzy Chaotic Synchronization
4. Fuzzy Chaotic Communication
5. Numerical Example
6. Conclusions
References





1. INTRODUCTION
2. RECONFIGURABLE CMOS PA DESIGN
3. SIMULATION RESULTS AND LAYOUT
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. RECENT IMPROVEMENT OF IMPLEMENT EFFICIENCY
3. VLSI Implementation of LSD
4. Conclusion
5. REFERENCES


1. Introduction
2. The Technological Configuration
3. The Experiment and Consideration
4. Conclusion
References


1. Introduction
2. Proposed Architecture of High-Performance Transform Circuit
3. Circuit Implementation and Results
4. Conclusions
Acknowledgement
References


1. Introduction
2. Multilevel Sequence Pair Representation
3. Multilevel Expanding of IARFP
4. Experimental Results
5. Conclusion
REFERENCES


1. Introduction
2. Optimization Goal and Searching Methods
3. Determination of Control Parameters by SA
4. Determination of Control Parameters by MGA
5. Application Results and Discussion
6. Conclusion
References


1. INTRODUCTION
2. DYNAMIC OFFSET-CANCELLATION METHOD
3. PROPOSED DYNAMIC OFFSET-CANCELLATION METHOD and REALIZATION
4. SIMULATION RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT


1. INTRODUCTION
2. MULTIFACTOR DIMENSIONALITY REDUCTION SOFTWARE : MDR
3. JAVA NATIVE COMPILATION
4. EXPERIMENT RESULTS
5. CONCLUSION
6. REFERENCES





1. Introduction
2. SIP and Message flow
3. Performance Indices and Considerations for SIP server test
4. Implementation of tester and performance test
5. Conclusion
References


1. INTRODUCTION
2. TIME PETRI-NET
3. MODELING CIRCUITS
4. STUCK-AT FAULT
5. THE TPN STUCK-AT FAULT MODEL
6. EXPERIMENTAL RESULT
7. TESTING OF ASYNCHONOUS CIRCUITS
8. CONCLUSION AND FUTURE WORK
9. ACKNOWLEDGEMENT
10. REFERENCES




1. INTRODUCTION
2. FAULT MODELS AND FAILURE MODES IN WEB SERVICES
3. SOAP EXTENSION FOR FAULT-TOLERANCE
4. EXPERIMENTS AND RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Existing Restoration Algorithms
3. Proposed Restoration Algorithm
4. Performance Analysis
5. Conclusion
References





1. INTRODUCTION
2. MULTIPLE ALIGNMENTS
3. AN EVOLUTIONARY TREE-BASE METHOD
4. EXPERIMENTAL EVALUATION
5. CONCLUSIONS
6. REFERENCES


I. INTRODUCTION
II. OFDM SYSTEM MODEL AND CHANNEL STATISTICS
III. LMMSE CHANNEL ESTIMATION
IV.PROPOSED CHANNEL ESTIMATION METHOD
V. SIMULATION RESULTS
IV. CONCLUSION
REFERENCES


1. Introduction
2. Model Description
3. Control Newtork with bluetooth
4. Experimental Results
5. Concluding Remarks
References


1. Introduction
2. Application Specific Instruction-Set Processor and Compiler
3. Synthesis and Simulation Results
4. Conclusions
References


1. Introduction
2. Min-Sum algorithm
3. High-efficiency message-passing algorithm
4. A compressing method for data store
5. Hardware architecture
6. Implementation result
7. Conclusion
8. Acknowledgement
References


1. Introduction
2. General System Organization
3. Control Packet Construction
4. Experiments
5. Concluding Remarks
References


1. Introduction
2. EPG UI Technology in digital broadcasting
3. Technology for Rendering Engine
4. Experiment method
5. Conclusion
References


1. INTRODUCTION
2. RELATED WORK
3. DETECT OUTLIERS BASED ON AREA DESCENT
4. EXPERIMENTS
5. CONCLUSION
6. ACKOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Karhunen-Loeve transformation
3. Character recognition of a slab images
4. Experiments and results
5. Conclusion
References


1. INTRODUCTION
2. REVIEW OF LITERATURE
3. CONCEPTUAL DESIGNS OF THE RESEARCH
4. PROPOSED MODEL OF THE RESEARCH
4. EXPERIMENTS AND RESULTS
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. SLIDING WINDOW CACHING POLICY
3. CACHE REPLACEMENT ALGORITHM BASED ON SLIDING WINDOW CACHING POLICY
4. PERFORMANCE EVALUATION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Preliminary
3. Selective Shift
4. Evaluation
5. Conclusion
References





1. INTRODUCTION
2. OUTLIER DETECTION BASED ON AREA DESCENT
3. ELIMINATION OF OUTLIERS
4. EXPERIMENTS AND RESULTS
5. CONCLUSION
6. ACKOWLEDGEMENT


1. INTRODUCTION
2. SYMMETRIC KEY CRYPTOGRAPHIC ALGORITHMS
3. SECURITY LEVEL FOR EACH CRYPTOGRAPHIC ALGORITHM
4. POWER DISSIPATION
5. EXPERIMENT AND RESULTS
6. CONCLUSION
7. ACKNOWLEDGEMENT
8. REFERENCES


1. Introduction
2. Description of Problem
3. Pole Assignment Method
4. Conclusion
References


¥°. Introduction
¥±. Preliminaries
¥². Design Method
¥³. Experimental Result
¥´. Conclusions
References


1. Introduction
2. Edit Distance
3. Basic Algorithm
4. Extensions of the Algorithm
5. FPGA Implementation
6. Conclusion
Acknowledgments
References


1. Introduction
2. Preprocessing of Camera Document Image Segmentation
3. Connected Component Analysis
4. Rough Classification of Components
5. Clustering of Text Components
6. Refinement of Text Blocks by Iterative Split and Merge
7. Experiment and Conclusion
References


1. INTRODUCTION
2. RELATED WORKS
3. COMMON COMMUNICATION PROTOCOL(CCP)
4. HOME STATION(HS)
5. SWITCH CHIP
6. EXPERIMENTS
7. CONCLUSIONS
8. REFERENCES


1. INTRODUCTION
2. NETWORK ON CHIP ARCHITECTURE
3. VIRTUAL CIRCUIT SWITCHING
5. SIMULATION AND DISCUSSION
6. CONCLUSION
6. REFERENCES





1. Introduction
2. The Necessity of Adaptive Igniter
3. The comparison of lamp life
4. Experimental Results
5. Conclusion
References


1. Introduction
2. The Characteristic of curve-type defects in TFT-LCD
3. Processing Algorithm
4. Experimental Results
5. Conclusion
6. References




1. INTRODUCTION
2. MULTILEVEL B-SPLINE APPROXIMATION
3. CHARACTERISTICS OF FLAT PANEL DISPLAY
4. PROPOSED ALGORITHM
5. ACKNOWLEDGEMENT
6. CONCLUSION
7. REFERENCES


I. INTRODUCTION
II. SYSTEM MODEL
III. ASA IN MIMO-OFDMA
IV. SIMULATION RESULTS
V. CONCLUSION
REFERENCES





1. INTRODUCTION
2. ASYNCHRONOUS DISTRIBUTED OPTIMIZATION
3. PROPOSED METHOD
4. CONCLUSION
5. ACKNOWLEDGEMENTS
6. REFERENCES


1. INTRODUCTION
2. MAC SCHEME FOR BEST EFFORT SERVICE
3. QUEUEING SYSTEM AT BASE STATION
4. NUMERICAL EXAMPLES
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Theory and process
3. Experiment and result
4. Conclusion
Acknowledgements
References


1. Introduction
2. Scheme for leakage measurement
3. Leakage monitor circuit
4. Circuit analysis
5. Conclusion and future work
6. Acknowledgement
References


1. Introduction
2. The Proposed Architecture
3. Conclusion
References


1. Introduction
2. Vowel string information of Korean digit
3. Connected digit recognition
4. Experiments and Results
5. Conclusions
Acknowledgement
References


1. INTRODUCTION
2. SEGMENTATION TRACKING BY FBAD(+, ¡¿)-SCANNING ALGORITHM
3. UNIFICATION : PARTICLE FILTERS, FBAD AND S-SIFT FEATURES FOR RECOGNITION
4. CONCLUSIONS AND DISCUSSION
5. REFERENCES


1. INTRODUCTION
2. RFID System Structure
3. Position estimation of mobile robot
4. Results of test
5. Conclusion
6. REFERENCES





1. Introduction
2. Proposed Method
3. Experimental Results
4. Conclusions and Future work
Acknowledgement
References


1. INTRODUCTION
2. METHODLOGY
3. EXPERIMENTAL RESULTS
4. CONCLUSTIONS
5. REFERENCES




1. INTRODUCTION
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Passive RF-ID system
3. Vehicle Speed Watching System
4. Experimental results and Simulation
5. Conclusion and further work
Acknowledgement
References





1. INTRODUCTION
2. NOTATION
3. LITREATURE REVIEW
4. BACKGROUND CONCEPT
5. NETWORK DESIGN USING GA
6. SIMULATION RESULT
7. CONCLUSION
8. REFERENCES


1. INTRODUCTION
2. FIRE DETECTION ALGORITHM
3. RESULTS
4. CONCLUSION
5. Acknowledgments
6. REFERENCES


1. Introduction
2. Frequency normalization
3. Amplitude normalization
4. Experiments and Results
5. Conclusions
Acknowledgement
References


1. Introduction
2. Dynamic Reconfigurable Processor
3. Application of Dual Supply Voltages for MuCCRA-D
4. Evaluation Results
5. Conclusion
6. Future Work
Acknowledgements
References


¥°. Introduction
¥±. Proposed STA approach for PS-shared MTCMOS circuits
¥². Experimental results
¥³. Conclusions and future work
Acknowledgments
References


1. Introduction
2. Positive real function & Foster function
3. A new type of line spectral pairs
4. Simulation Results
5. Conclusions
References


1. INTRODUCTION
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. RFID AND PKITECHNOLOGIES
3. UBIQUITOUS RFID HEALTHCARE SYSTEM
4. SERVICE WORKFLOW VERIFICATION
5. CONCLUSION
6. REFERENCES





1. Introduction
2. Forward Channel Power Allocation Algorithm and Analysis Model
3. Analysis results
4. Conclusions
References


1. INTRODUCTION
2. PERFORMANCEANALYSIS FOR ODSB SIGNALSIN AN OPTICAL LINK
3. NUMERICAL AND SIMULATION RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES




1. INTRODUCTION
2. HADAMARD MATRIX AND WALSH FUNCTIONS
3. ORTHOGONAL CHAOTIC BINARY SEQUENCES
4. ORTHOGONAL SEQUENCES GENERATED BY NFSRS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. FIR Digital filter
3. Reconfigurable FIR filter with multi-input using AND-based bit-serial multiplier
4. Simulation, Synthesis and Implementation
5. Conclusions
References





1. INTRODUCTION
2. SYSTEM OVERVIEW
3. CONCLUSION AND FUTURE WORK
4. ACKNOWLEDGMENT
REFERENCES


1. INTRODUCTION
2. THAI SIGN IMAGES
3. SYSTEM OVERVIEW
4. EXPERIMENTAL RESULTS
5. CONCLUSION AND FUTURE WORKS
6. REFERENCES


1. Introduction
2. Time-clipping Due to the Variable Rate Encoding
3. The Proposed Preprocessing Method
4. Experiment
5. Experimental Results and Discussion
6. Conclusion
References


1. Introduction
2. Proposed SoC platform
3. verification
4. Implementation
5. Conclusion
References


1. Introduction
2. Interpolation Method
3. Design of Interpolator
4. Implementation Results
5. Conclusion
Acknowedgment
References


1. Introduction
2. Design of high speed digitizing sampler
3. Some Test Results
4. Conclusions
Acknowledgements
References


1. INTRODUCTION
2. LINEAR/NONINEAR SHIFT REGISTERS
3. FEEDBACK-LIMITED NFSR
4. CIRCUIT DESIGN AND IMPLEMENTATION
5. EXPERIMENTAL RESULT ON FPGA BOARD
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Related Works
3. Knowledge
5. 3-tier Word Sense Disambiguation
6. Experiments
7. Conclusion
8. REFERENCES





1. Introduction
2. Problem formulation
3. False aggressor pruning algorithm with functional correlation
4. Experimental results
5. Conclusions
Acknowledgments
References


1. INTRODUCTION
2. SYNTHESIS OF PERIODIC AND APERIODIC BINARY SEQUENCES BY MODULO-2 ADDITION
3. PROPOSED SEQUENCE GENERATOR
4. CONCLUDING REMARKS
5. REFERENCES




1. INTRODUCTION
2. INTERVAL NEWTON METHOD
3. BOX'S SIZE CONTRACTION
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Problem Definition
3. Simulated Annealing Algorithm
4. Analysis of Performance
5. Conclusions
References





1. Introduction
2. Combination of ASM and Particle Filter
3. Exoeriments and Results
References


1. INTRODUCTION
2. MEASUREMENT
3. MEASUREMENT RESULT
4. ANALYSIS
5. CONCLUSION
REFERENCES


1. Introduction
2. Double-Talk Detection Errors in the Conventional Methods
3. Proposed Algorithm with an Auxiliary Filter
4. Experimental Results
5. Conclusion
References


2. Basic OpenVG Pipeline
3. A proposed pipeline
4. Verification
5. Conclusion
References


1. Introduction
2. preparation work
3. A proposed recovery mechanism
4. Structure of L1 Recovery Cache
5. Conclusions Simulation methodology
6. Conclusions
References


1. Introduction
2. Microphone Array with MMSE-STSA Estimator Based Post-processing
3. Experiments and Discussions
4. Conclusion
References


1. INTRODUCTION
2. THE PORT RESISTIVITY
3. DART
4. COMPUTER SIMULATIONS AND RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Development facilities
3. Conclusion
4. Authors





1. Introduction
2. Pulse Design
3. Derived Pulses
4. Transmission Performances
5. Conclusions
Acknowledgement
References


1. INTRODUCTION
2. CONVENTIONAL ALGORITHMS
3. DOUBLE-ELLIPSE ALGORITHM FOR BLIND EQUALIZATION AND CARRIER PHASE RECOVERY
4. RESULTS
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. VECTOR EQUATION ERROR ADAPTIVE IIR FILTERING
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Hierarchical timing analysis using functional relations considering global false path algorithm
3. Experimental results
4. Conclusions
Acknowledgement
References





1. INTRODUCTION
2. ACCESS TYPES
3. A 3D MEMORY ARCHITECTURE
4. SIMULATION
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. SYSTEM PERFORMANCE OF DS-CDMA IN MULTIPATH ENVIRONMENT
3. DIGITIZED CHAOTIC SEQUENCES REALIZABLE BY NFSR
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Variable Bandwidth Filter
3. Frequency Analysis of VBF
4. Band-pass VBF
5. Simulation Examples
6. Conclusions
ACKNOWLEDGEMENT
References


1. Introduction
2. Analysis of Raytracing
3. Design of Judging of Intersection and Updating
4. Evaluation results
5. Conclusion and future work
Acknowledgement
References


1. Introduction
2. Open Lead Detection Method
3. Evaluation by Experiments
4. Conclusion
References


1. Introduction
2. The Bruun Algorithm for Computing DFT
3. Cyclotomic Polynomial Factorization Algorithm
4. ¥õ-Polynomial Factorization Algorithm
5. Improving the Computations
6. Conclusions
References


1. INTRODUCTION
2. SYSTEM MODEL
3. TURBO CODES[7]
4. THE EQUALIZER STRUCTURE
5. VARIABLE STEP-SIZE ALGORITHM FOR THE UPDATE COEFFICIENTS OF THE EQUALIZER
6. NUMERICAL RESULTS
7. CONCLUSION
8. REFERENCES


1. INTRODUCTION
2. HISTORICAL SIMULATION
3. GENETIC ALGORITHM
4. SIMULATION RESULTS
5. CONCLUDING REMARK
6. REFERENCES





1. Introduction
2. Arrangement of m memory modules
3. Conculsion
References


1. INTRODUCTION
2. SYSTEM MODEL
3. APPROXIMATE MAXIMUM LIKELIHOOD ESTIMATOR
4. CRAMER-RAO BOUND
5. NUMERICAL RESULTS
6. CONCLUSIONS
7. ACKNOWLEDGEMENT
8. REFERENCES




1. INTRODUCTION
2. SYSTEM DESCRIPTION
3. ITERATIVE EXTRAPOLATION METHOD
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Block Mode and R-D Cost
3. The Proposed Algorithm
4. Experiments for Performance
5. Conclusion
References





1. INTRODUCTION
2. METHODOLOGY AND DESIGN
3. Testing and Results
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. TAYLOR-SERIES(TS) ALGORITHM AND HYBRID LINES OF POSITION(HLOP) ALGORITHM
3. SQLUTIONS TO TOA/AOA EQUATIONS
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Principle of Pulseoximeters
3. Proposed Algorithm
4. Simulation Result
5. Conclusion
Acknowledgment
References


1. Introduction
2. Motivation
3. Flexible Multi-IP verification platform
4. Case Study
5. Conclusion
Acknowledgements
References


1. Introduction
2. Targeted Layouts
3. Fault Analysis
4. Conclusion
Acknowledegements
References


1. Introduction
2. Adaptive Notch Filter
3. ECLMS Algorithm
4. Simulation Results
5. Conclusion
Reference


1. Introduction
2. System Model
3. Proposed Switch-Matrix Tx/Rx Control Technique
4. Experimental Results
5. Conclusion
REFERENCES


1. Introduction
2. Basic structure
3. Model of an input region in a visual cortex
4. Simulation
5. Conclusions
6. Acknowledgements
7. References





1. Introduction
2. Methods
3. Results and Discussion
4. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. INTERFERENCE SUPPRESSION AND MULTIPATH MITIGATION
3. MSNR BEAMFORMER
4. SIMULATIONS
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. MEASUREMENT SYSTEM
3. DATA PROCESSING
4. RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Experimental Setup
3. Results and Discussion
5. Conclusions
References





1. INTRODUCTION
2. CONVENTIONAL METHOD
3. PROPOSED METHOD
4. DESIGN EXAMPLE
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. BRIEF REVIEW OF FOURIER-BASED 2D-IMAGE RECONSTRUCTION
3. PROPOSED METHOD TO REDUCE SYSTEM SENSITIVITY TO ADDITIVE NOISES
4. RESULTS OF NUMERICAL EXPERIMENTS
5. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. Overview of Danger Theory
3. Overview of Immunological Model of Distributed Detection
4. Overview of Process Homeostasis (pH) for Operating System Stability
5. Applying Danger Theory to Immunological Model of Distributed Detection and pH
6. Conclusion
7. Acknowledgment
References


2. Backgrounds
3. Implementation of Virtual ARM Simulation Platform
4. Experimental Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Basics of Ant Colony Optimization
3. Overview of EAR
4. Scalability Evaluation
5. Conclusion
Acknowledgement
References


1. Introduction
2. Error Spectrum Shaping
3. State-Space Digital Filters with ESS
4. DA for Self-roundoff Noise Cancellation
5. Conclusions
References


1. INTRODUCTION
2. CONVENTIONAL CIRCUIT
3. PROPOSED TECHNIQUE
4. SIMULATION RESULTS
5. CONCLUSION
REFERENCES


1. Introduction
2. The Composition of New Full Wave Rectifier
3. Performance Results
4. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Diagnoses Step of the Instrument
3. Circuits Simulation
4. Results
ACKNOWLEDGEMENT
References


1. INTRODUCTION
2. SPECTRAL ANALYSIS of AWG
3. OPTIMIZATION of AWG USING(1+1) EVOLUTION STRATEGY
4. OPTIMIZATION RESULTS AND DISCUSSIONS
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. SYSTEM MODEL
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES


1. Introduction
2. Designing a power amplifier
3. Design of an Antenna
4. Experiment and Measurement
5. Conclusion
Acknowledgement
References





1. INTRODUCTION
2. NETWORK MODEL
3. PULSE-TYPE HARDWARE NEURON MODEL
4. SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. WAVEFORM MODELS
3. OPTIMIZATION RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Description of the destination guidance system
3. A classical decomposition method
4. The performance of the classical decomposition method
5. Conclusion
References


1. Introduction
2. Issues in Network Management on Mobile and Wireless Environment
3. Consideration about new monitoring model
4. Conclusions
Acknowledgments
References


1. Introduction
2. The packet processing scheduling algorithm
3. Experiment result
4. Conclusion
References


1. Introduction
2. The Tracking System
3. The Simulation Results
4. Conclusion
References


ABSTRACT
2. FDTD METHOD
3. NUMERICAL SIMULATION RESULTS
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. FUNDAMENTAL P-HNM
3. P-HNMS WITH PLASTICITY
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. Introduction
2. System Configuration
3. Methods
4. Results and Discussion
5. Conclution
Acknowledgment
References


1. INTRODUCTION
2. SMALL-SCALE FADING
3. STATISTICAL MODEL
4. CONCLUSION
5. REFERENCES




1. INTRODUCTION
2. NEW DIFFERENCE EXPANSION SCHEME
3. EXPERIMENTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introductio
2. Wavelet Transform
3. Proposed Algorithm
4. Experiments and Evaluations
5. Conclusion
Reference





1. INTRODUCTION
2. FORMULATION OF PROTECTION RATIO
3. SIMULATED RESULTS AND DISCUSSION
4. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. THEORETICAL SNR GAIN AND BER PERFORMANCES
3. PERFORMANCE ANALYSIS RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Background
3. MLS-PC Algorithm
4. Results
5. Conclusion
5. References


1. Introduction
2. Fundamentals
3. Main Proposal
4. Cost Evaluation and Simulation
5. Conclusion
6. Acknowledgement
References


1. Introduction
2. Fundamental
3. Main Proposal
4. Comparison
5. conclusion
6. Acknowledgment
References


1. Introduction
2. Low-power real-time 2-D DWT circuit
3. Inter-frame compression
4. Experimental results
5. Conclusions
Acknowledgements
References


1. INTRODUCTION
2. SYSTEM MODEL of A COOPERATIVE RELAYING
3. SELECTION COMINING DIVERSITY
4. POWER LIMIT of A RELAY NODE
5. NUMERICAL RESULTS
6. CONCLUSIONS
7. ACKNOWLEDGEMENTS
8. REFERENCES


1. INTRODUCTION
3. PERFORMANCE MEASURE APPROXIMATION
4. COMPUTATION RESULTS
5. CONCLUSIONS
6. REFERENCES





1. Introduction
2. Related Work
3. System Architecture
4. Multi-layer Image Metadata Modeling
5. Prototype Implementation
6. Conclusions
References


1. INTRODUCTION
2. DOP and SNR
3. FUZZY LOGIC SYSTEM
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. NETWORK ARCHITECTURE
3. MAP-WDMA MAC PROTOCOL
4. PERFORMANCE ANALYSIS OF MAP-WDMA
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. RelatedWorks and Background
3. Bandwidth Allocation
4. Performance Measurement and Discussion
5. Conclusion and Future Work
References





1. INTRODUCTION
2. EXPERIMENTAL METHODS
3. EXPERIMENT RESULTS
4. RAIN ATTENUATION MODEL
5. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES


1. INTRODUCTION
2. MODULATED DSSS SYSTEM
3. ADAPTIVE BEAMFORMER FOR INTERFERNCE EXCISION
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Bit-level Systolic Array for Convolution
3. Simulation and Synthesis
4. Conclusions
References


1. Introduction
2. Preliminaries of Petri nets
3. Deadlock detect algorithm in Petri net using the transitive matrix
4. Application example
5. Conclusion
References


1. Introduction
2. Preliminaries
3. Conventional modeling method by QPN
4. Problems of conventional method
5. Examination of modeling QTM by new model
6. Conclusion
References


1. Introduction
2. Specification and Structure of CODEC
3. Operation of CODEC
4. Component Blocks of CODEC
5. Experimental Result
6. Conclusion
ACKNOLEDGEMENT
References


1. INTRODUCTION
2. GARELLO'S ALGORITHM AND COMPUTATION OF THE FREE DISTANCE OF SCCCS
3. VILID CODEWORD TRELLIS SEARCH (VCWTS) ALGORITHMS
4. NUMERICAL RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. NEAR-FIELD SIGNAL MODEL
3. ESTIMATION OF SIGNAL PARAMETERS
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Theoretical Background
3. PLC control system on web browser
4. The operation and the experimental results
5. Conclusion
References


1. INTRODUCTION
2. SUBCARRIER ALLOCATION OF DVB-H
3. CONVENTIONAL SCHEMES
3. PROPOSED SCHEME
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. MoIP IN UFC
3. CONCLUSION
4. ACKNOWLEDGEMENT
5. REFERENCES


1. Introduction
2. Design Method
3. Computer Simulation
4. Conclusion
References





1. INTRODUCTION
2. GEOMETRY OF ANTENNA
3. ANTENNA DESIGN FOR BANDWIDTH ENHANCEMENT
4. RADIATION PATTERNS AT TRIPLE BANDS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. A REVIEW OF PREVIOUS BOUNDS AND COMPARISON
3. UPPER BOUNDS FOR PARTICULAR LDPC CODES AND TURBO CODES WITH PARTICULAR INTERLEAVERS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Architecture of RISC Processor proposed.
3. Design Synthesis
4. Simulation and measurement of performance
5. Conclusion
REFERENCES


1. Introduction
2. WF-Nets and Soundness
3. A Model Checking Method of Soundness
4. Verification Tool and Evaluation
5. Conclusion
References


1. Introduction
2. A Model of Multiprocessor System and Necessary Definitions
3. Proposal of Our Scheduling Method
4. Computational Simulation and The Evaluation Result
5. Conclusion
References


1. Introduction
2. Cell-Network-based Image Segmentation Architecture for Digital Pixel-Parallel Processing
3. Full-Custom CMOS Test-Chip Design
4. Performance Measurement of the CMOS Test-Chip
5. Conclusion
Acknowledgments
References


1. INTRODUCTION
2. DIGITAL HOLOGRAM
3. PROPOSED ALGORITHM
4. EXPERIMENTAL RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. FDTD METHOD
3. NUMERICAL SIMULATION RESULTS
4. CONCLUSION
5. REFERENCES




1. Introduction
2. The ST-RPD Scheme
3. Computational Complexity
4. Simulation Results
5. Concluding Remarks
Acknowledgement
References


1. INTRODUCTION
2. PROPOSED ALGORITHM
3. COMPUTATIONAL COMPLEXITY
4. DISCUSSION AND CONCLUSION
5. REFERENCES




1. INTRODUCTION
2. RELATED WORKS
3. PROPOSED STEGANOGRAPHY SCHEME
4. SECURITY ANALYSIS
5. EXPERIMENT RESULTS
6. CONCLUSIONS
7. ACKNOWLEDGEMENT
8. REFERENCES


1. Introduction
2. Filtration Equations of a Discrete Markov Processes with Several States
2. Filtration of a discrete Markov process with q ¡Ã 2 state
References





1. INTRODUCTION
2. DIGITAL MUSEUM IMAGES
3. PROPOSED METHOD
4. SIMULATION
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRUDUCTION
2. MODIFIED HERMITE POLYNOMIAL
3. m-ARY UWB SYSTEM
4. NUMERICAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. HMAC-SHA-512 algorithm
3. Hardware architecture
4. FPGA implementation of HMAC-SHA-512
5. Conclusion
References


1. Introduction
2. Definitions and Notations
3. Reachability of batch state machines
4. Conclusion
References


1. Introduction
2. Model Decomposition
3. Algorithm to Estimate Delay Time
4. Simulation Result
5. Concluding Remarks
References


1. Introduction
2. Preview of Conventional Method
3. Proposed Method
4. Simulations
5. Conclusion
References


1. INTRUDUCTION
2. MHP PULSE MODEL
3. THMA-UWB SYSTEM
4. NUMERICAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. A SUMMARY OF A CONVENTIONAL METHOD
3. THE REVERSIBLE WATERMARKING METHOD
4. SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFEENCES





1. Introduction
2. Definitions
3. Siphons and traps
4. Liveness monotonicity and token free siphon
5. Liveness monotonicity condition based on insufficiently marked siphon
6. Conclusion
References


1. INTRODUCTION
2. REVIEW OF TSAUR ET AL.'S SCHEME
3. AN IMPERSONATING ATTACK ON TSAUR ET AL.'S SCHEME
4. CONCLUSION
5. REFERENCES




1. INTRODUCTION
2. SOME DRAWBACKS OF LIN-TSAI'S SCHEME
3. PROPOSED SCHEME
4. PERFORMANCE ANALYSIS
5. EXPERIMENTAL RESULTS
7. CONCLUSIONS
8. ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. Basic Design of Linear OTAs
3. Realization number of the generalized linear OTAs
4. Linear OTA for n = 3
5. Conclusion
References





1. INTRODUCTION
2. OUR PREVIOUSLY PROPOSED METHOD
3. OUR PROPOSED METHOD
4. SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Modified Booth algorithm
3. Low power multiplication using Booth encoding
4. Proposed low power multiplication
5. Experiment results
6. Conclusion
References


1. Introduction
2. Network coding and a new coloring
3. Results
4. Conclusion
References


1. Introduction
2. Structure of feature graph and outline of generating method
3. Clustering and vertices detection
4. Edge trace, addition of curve vertex and calculating relative locations
5. Conclusion
References


1. Introduction
2. Feature Area Extraction Algorithm
3. Character Recognition Using the Enhanced RBF Neural Network
4. Experiment Results
5. Conclusion
REFERENCES


1. INTRODUCTION
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. MATERIALS AND METHODS
3. RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Coupled oscillator using P-HNMs
3. Results
4. Conclusion
Acknowledgements
References


1. INTRODUCTION
2. PRINCIPLE OF THE VARIABLE KEY
3. EXPERIMENTAL SETUP
4. RESULTS AND DISCUSSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. A QUALITY STANDARD OF MMoIP SERVICES IN IMS NETWORKS
3. The ARCHITECTURE OF THE IMS TEST-BED
4. PERFORMANCE
5. SUMMARY
6. REFERENCES


1. Introduction
2. The Arbitrary Scale Enlargement Based on Laplacian Pyramid Repressentation
3. Parameter Estimation
4. Simulation
5. Conclusion
References





1. INTRODUCTION
2. PROPOSED DETECTION ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. PROPOSED ALGORITHMS
3. EXPERIMENTAL RESULTS & DISCUSSIONS
4. CONCLUSIONS
5. REFERENCES


1 INTRODUCTION
2 A CONVENTIONAL ALGORITHM
3 A PROPOSAL OF THE ALGORITHM
4 SIMULATION
5 CONCLUSION
6 REFERENCE


1. Introduction
2. Preliminary
3. Verification for behavioral inheritance
4. Application
5. Conclusion
Acknowledgement
References


1. Introduction
2. Preliminaries
3. The Existence Condition for Feasible Solutions
4. A Linear Time Algorithm
5. Concluding Remarks
References


1. Introduction
2. Proposed Technique
3. Experimental results and Discussion
4. Conclusions
5. Acknowledgments
References


1. INTRODUCTION
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. PROPOSED DETECTION ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCES




1. Introduction
2. Indoor Location Aware System
3. Indoor Location Aware System Using Ultrasonic and Radio Communication
4. Services
5. Conclusion
References


1. INTRODUCTION
2. ABSOLUTE DELAY DIFFERENTIATION MODEL
3. EVALUATION
4. CONCLUSIONS
5. REFERENCES




1. Introduction
2. The Problem of SMR as an Equal-Cost Multipath Routing
3. Proposed Split Equal-Cost Multipath Routing(SEMR)
4. Performance Evaluation
4. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Proposed Idea
3. System
4. Methods
5. Experiments and Results
6. Conclusion
Acknowledgments
References





1. Introduction
2. Background
3. Proposed Skin Color Model
References


1. INTRODUCTION
2. SYSTEM OVERVIEW
3. PRE-PROCESSING
4. BILLBOARD DETECTION
5. EXPERIMENTAL RESULTS
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Parasitic capacitances due to air-bridges
3. Measurements and Analysis
4. Conclusion
Acknowledgement
References


1. Introduction
2. Preliminaries
3. Our Algorithm
4. Experiments
5. Conclusion
References


1. Introduction
3. Diagnosability Property
4. Sufficient Condition for Diagnosability
5. Conclusion
Acknowledgments
References


1. Introduction
2. ProposedLPF
3. Simulation results
4. Conclusions
References


1. Introduction
2. Problem Statement
3. Energy Efficient PNC Selection Procedure
4. Simulation
5. Closing Remarks
6. REFERENCES


1. INTRODUCTION
2. SHOEPRINT REPRESENTATION BY THE RIDGELET TRANSFORM
3. PARTIAL MATCHING BY THE GENERALIZED HOUGH TRANSFORM
4. CONCLUSION
Acknowledgments
5. REFERENCES





1. Introduction
2. Modeling
3. Algorithm Outline
4. Experiments
5. Conclusion
References


1. INTRODUCTION
2. IMAGE COMPRESSION BY USING VECTOR QUANTIZATION
3. APPLYING A GENERALIZED HARMONIC ANALYSIS TO VECTOR QUANTIZATION
4. PERFORMANCE EVALUATION
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. TWO-STAGE CODING IN THE WAVELET DOMAIN
3. OUTLINE OF THE CODING METHOD
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Lagrangian method and Quantization for AVC
3. Proposed Algorithm
4. Experimental Results
5. Conclusions
6. Acknowledgments
REFERENCES





1. INTRODUCTION
2. GROUND DATA PROCESSING SYSTEM
3. DUAL REDUNDANT DESIGN
4. ANALYSIS
5. RESULTS AND CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. ROUTING PROTOCOLS
3. PROPOSED METHOD
4. RESULTS AND CONSIDERATIONS
5. CONCLUSION
6. ACKNOWLEDGEMENTS
7. REFERENCES


1. Introduction
2. Syntheses of Filters
3. Performance
4. Conclusions
Acknowledgment
References


1. Introduction
2. Packing Problem
3. O-Tree
4. Proposal Technique
5. Experiment
6. Result
7. Conclusion
References


1. Introduction
2. Algorithm
3. Evaluation
4. Conclusion
References


1. Introduction
2. Conventional Schemes
3. Proposed Scheme
4. Comparison and Conclusion
References


1. INTRODUCTION
2. PROPOSED VERSION OF ALOHA
3. STOPPING RULE PROBLEM
4. BAYES STOPPING RULE
5. NUMERICAL EXAMPLE
6. CONCLUSIONS
7. REFERENCES


1. INTRODUCTION
2. ANALYSIS SKIN COLOR
3. ANALYSIS RELATIONS OF MEAN VALUES
4. CONCLUSION
5. REFERENCES





1. Introduction
2. Imaginary resistor
3. Proposed method
4. Design example
5. Conclusions
References


1. INTRODUCTION
2. THE EXISTING 1DINT-DCTS
3. THE PROPOSED MULTIPIERLESS INT-DCT
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. DISCRETE WAVELET TRANSFORM
3. PROPOSED IMPLEMENTATION
4. RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENTS
7. REFERENCES


1. Introduction
2. System model
3. Design of pilot signal
4. Performance evaluation
5. Conclusions
References



1. INTRODUCTION
2. SYSTEMC
3. 2D CONVOLUTION AND EDGE DETECTOR
4. SYSTEM MODELING WITH SYSTEMC
5. CONCLUSIONS
6. ACKNOWLEDGEMENTS
7. REFERENCES


1. INTRODUCTION
2. REVIEW OF SELF-ORGANIZATION ALGORITHMS
3. METHODOLOGY
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. MFG-MOSFET
3. Circuit Operation
4. Simulation Results
5. Conclusion
References


1. Introduction
2. No One-to-One Mapping Problem
3. Inverse Matrices Using One-to-One Mapping
4. Conclusion
References


1. Introduction
2. s-z Transformation
3. Recurrence Formula
4. Interesting Property
5. Conclusion
References


1. INTRODUCTION
2. GROUNDED ATIVE INDUCTOR
3. FLOATING ACTIVE INDUCTOR
4. FOURTH-ORDER BANDPASS FILTER
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. BASIC TERMINOLOGY
3. ROUTING ALGORITHM
4. SIMULATION STUDY AND CONCLUSION
5. REFERENCES


1. Introduction
2. Overview of the Algorithm
3. Partitive Search Algorithm
4. EXPERIMENTAL RESULTS
5. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Vision of 4G
3. 4G Service Features
4. 4G Services
5. Trial 4G Testbed
6. Conclusion
References


1. INTRODUCTION
2. RELATED STUDIES
3. THE PROPOSED BINARIZATION METHOD USING INTENSITY INFORMATION
4. EXPERIMENTS AND RESULTS ANALYSIS
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. DRIVING THE CENTROID METHODS
3. SIMULATION TESTING
4. ALGORITHM PERFOMANCE
5. CONCLUSION
6. REFERENCES


I. INTRODUCTION
II. TSK FUZZY MODEL
III. FUZZY MODELING USING NOISE CLUSTERING CONCEPT
IV. SIMULATION RESULTS
V. CONCLUSION
REFERENCES





1. INTRODUCTION
2. METHODOLOGY
3. RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. OPTICAL LINK SYSTEM
3. CIRCUIT DESIGN
4. MEASURED PERFORMANCE
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Trading Agent Competition (TAC)
3. Design of agent strategy
4. Setting of an experiment
5. Experimantal result and Disscusion
6. Conclusion
References


1. Introduction
2. FPGA structure
3. Complex multiplier structure
4. Design
5. Experimental results
6. Conclusion
References


2. Conventional distance-based howling canceller
3. Adaptive bandwidth
4. Conclusion
References


1. Introduction
2. Preliminaries
3. Parallel and Distributed Genetic Algorithm on Grid Computing
4. Experimental Evaluation
5. Concluding Remarks
References


1. INTRODUCTION
2. CONTROL CIRCUIT DESIGN CONSIDERATION
4. CONTROL CIRCUIT OPERATION
5. EXPERIMENTAL VERIFICATIONS
6. CONCLUSION
7. REFERENCES


1. Introduction
2. MALT and scalable II system
3. Magnification of 3-D images by use of intermediate elemental images generated by IVRT
4. Experiments and results
5. Conclusion
6. Acknowledgements
7. References





1. Introduction
2. DBA Protocol Description
3. Performance Evaluation
4. Conclusions
References


1. INTRODUCTION
2. MATHEMATICAL MODEL
3. HYBRID CONTROL SYSTEM STRUCTURE
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. CIRCUIT DESCRIPTION
3. ResultsSIMULATION AND MEASURENT
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Circuit descriptions
3. Simulation results and Siscussion
4. Conclusions
5. References





1. Introduction
2. Background
3. Capsule Endoscope
4. Experiment and Result
5. Conclusion
6. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. DESIGN TECHNIQUES FOR POWER REDUCTION
3. CLOCKING SCHME FOR PIPELINED-ADC
4. SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Some Topics
3. Encoding the Z notations in CafeOBJ
4. Example Proofs
5. Related Works
6. Conclusions and future work
References


1. Introduction
2. System configuration
3. Recognition algorithm
4. Experiment
5. Conclusion
References


1. Introduction
2. Interface
3. Performance simulated by HSPICE
4. Performance of Prototype Interface
5. Conclusions
References


1. Introduction
2. Previous work
3. System Description
4. Results
5. Future work
References


1. INTRODUCTION
2. SUBSTRATE BIAS GENERATOR
3. ANALYSIS AND SIMULATION RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. SYSTEM STRUCTURE
3. MEASUREMENT OF ANGLES BASED ON THE MUSCULOSKELETAL SYSTEM
4. BEHAVIOUR MONITORING SYSTEM
5. RESULTS
6. CONCLUSION
7. REFERENCES





1. Introduction
2. A Totally Implantable Middle Ear System
3. The Design of Signal Processing Circuit
4. Implementation of the system
5. Experiment and Result
6. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. FUNCTIONS OF TRAIN CONTROL SYSTEM
3. PROPOSED SAFETY ANALYSIS PROCEDURE
4. APPLICATION OF SAFETY ANALYSIS PROCEDURE TO TRAIN CONTROL SYSTEM
5. Conclusion




1. INTRODUCTION
2. GENETIC ALGORITHM
3. ROBOT DYNAMICS AND LEARNING CONTROL
4. SIMULATION AND EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. TMN8 Rate Control and Its Improvement
3. First QP Adaptive Rate Control
4. Experimental Results
5. Conclusion
References





1. INTRODUCTION
2. RELATED WORKS
3. PROPOSED SEARCH ALGORITHM
4. RESULTS
5. CONCLUSION AND FUTURE WORKS
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. PRELIMINARY
3. A PROPOSED AES H/W TEST BENCH
4. RESULT AND CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Approach and Methods
3. Testing and Results
4. Conclusions
References


1. Introduction
2. Mathematical model
3. Boundary representation
4. Inverse problem
5. Results and discussion
6. Conclusions
References


1. Introduction
2. Problem Definition
3. Proposed Method
4. Experiment and Evaluation
5. Conclusion
References


1. Introduction
2. Approach and Methods
3. Testing and Results
4. Conclusions
References


1. INTRODUCTION
2. SENSITIVITY THEOREM
3. ITERATIVE METHODS
4. SIMULATION RESULT
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. RELATED WORK AND BACKGROUND
3. LATENT SEMANTIC INDEXING
4. CRAWLING STRATEGY
5. EVALUATION
6. CONCLUSION AND FUTURE WORK
REFERENCES



1. Introduction
2. System Design and Experiment
3. Infrared Control Part Design
4. Implementation of the System and Experiments
5. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. CONVENTIONAL ALGORITHMS
3. WAVELET SIGNAL PROCESSING
4. PROPOSED ALGORITHM
5. EXPERIMENTAL RESULTS
6. CONCLUSIONS
7. REFERENCES




1. INTRODUCTION
2. CONVENTIONAL NOISE REDUCTION SYSTEM
3. PERFORMANCE IMPROVEMENT OF LEVEL DETECTORS
4. SIMULATION OF NOISE REDUCTION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Circuit descriptions
3. Simulation results and Discussion
4. Conclusions
References



1. INTRODUCTION
2. STRUCTRE OF A PROPOSED ALGORITHM
3. ALGORITME USING FUZZY LOCIC
4. PROCESS OF ROUTE SELECTION
5. SIMULATION AND RESULT
6. CONCLUSION
7. REFERENCES




1. INTRODUCTION
2. GENERALIZEDLANDWEBERITERATION METHOD
3. ACCELERATION OF GLM
4. SIMULATIONS
5. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Context Extractor (CE)
3. Arithmetic Coder (AC)
4. Simulations and Experimental Results
5. Conclusion
References


1. Introduction
2. A magnetic encoder
3. A hardware task engine
4. Evaluation result
5. Conclusion
References


1. INTRODUCTION
2. THE IMAGE RECONSTRUCTION ALGORITHM
3. NUMERICAL SIMULATION
4. CONCLUSION
References


1. Introduction
2. Background
3. Proposed Methods
4. Experimental Settings
5. Experimental Results and Discussions
6. Conclusions
7. Acknowledgement
References


1. PROBLEM FORMULATION
2. MATHEMATICAL MODELING OF EIT AND FORWARD SOLVER
3. INVERSE SOLVER
4. SIMULATIONS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. STUREURE OF SYSTEM
3. THE PROPOSED ALGORITM
4. SIMULATION
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES



1. Introduction
2. Systolic arrays
3. Cubic systolic arrays
4. A cubic systolic memory
5. Vistas
6. Conclusions
References


1. INTRODUCTION
2. ACE WITH ROBUST DT DETECTION
3. EXPERIMENT AND DISCUSSION
4. CONCLUSION
ACKNOWLEDGMENT
REFERENCES




1. INTRODUCTION
2. CONTINUOUS SPEECH RECOGNITION
3. PIPELINE PROCESSING OF CONTINUOUS SPEECH RECOGNITION ALGORITHM
4. PERFORMANCE EVALUATION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Pitch Extraction for Speech Signal
3. Discrimination Method of Synthetic Speech
4. Experiments
5. Conclusions
References



1. INTRODUCTION
2. CIIR TECHNIQUES
3. SYNTHESIS OF IEI
4. EXPERIMENTS AND RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. DESIGN OF SERVO TRACK WRITING ERROR ESTIMATOR
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES


1. Introduction
2. Background
3. Proposed Methods
4. Experimental Settings
5. Experimental Results and Discussions
6. Conclusions
7. Acknowledgement
References


2. Preview of conventional method
3. Proposed method
4. Simulation results
5. Conclusions
References


1. Introduction
2. Modified Newton-Raphson algorithm
3. Proposed algorithm
4. Computer simulation
5. Conclusion
References


1. Introduction
2. Color Acquisition and Remeshing
3. Prediction and Coding
4. Simulation Result
5. Conclusion
References


1. Introduction
2. Physical Layer Specification and Receiver Model
3. Modem Algorithms
4. Simulation results and conclusion
References




1. INTRODUCTION
2. ITSoC TARGET ARCHITECTURE
3. AUTOMATING ITSoC INTEGRATION
4. INTERCONNECTION ENGINE
5. VIRTUAL TO REAL SYNTHESIS
6. CONCLUSION
7. REFERENCES



1. Introduction
2. System Development
3. Experiments
4. Discussion
5. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. CONTROL OF PERCEIVED DIRECTION AND DISTANCE
3. MEASUREMENT OF EARLY REFLECTIONS
4. THE PROPOSED ALGORITHM
5. CONCLUSIONS
6. REFERENCES




1. INTRODUCTION
2. PRINCIPLE OF SOUND FIELD PROCESSING SYSTEM
3. GROUPED REFLECTIONS ALGORITHM(GRA)
4. CONCLUSIONS
5. ACKNOWLEDGEMENTS
6. REFERENCES


1. Introduction
2. Equalization for ATSC DTV receivers
3. Analysis of adaptive channel estimation
4. Simulation results
5. Conclusions
References



1. Introduction
2. Proposed Watermarking Method
3. Experiments
4. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES




1. INTRODUCTION
2. UNITARY TRANSFORM
3. MATRIX PENCIL
4. SUMMARY OF THE ALGORITHM
4. NUMERICAL SIMULATIONS
6. REFERENCES


1. Introduction
2. Linear Phase Paraunitary Filter Bank with Filters of Different Lengths
3. Design
4. Simulation Results
5. Conclusions
References


1. Introduction
2. BSS Problem Formulation
3. Probabilistic Measurement of Predictability
4. PSLP-BSS
5. Results and Discussion
6. Conclusion
References


1. Introduction
2. Proposed motion estimation
3. Experimental results
4. Conclusion
Acknwledgements
References


1. Introduction
2. Data hiding technique for MPEG bitstream
3. Proposed method
4. Simulation
5. Conclusion
References


1. INTRODUCTION
2. CONVENTIONAL METHODS
3. PROPOSED METHOD
4. SIMULATION
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. BACKGROUND IMAGE MODEL CREATION AND EDGE EXTRACTION
3. EDGE DENSITY CALCULATION AND DIFFERENCE IMAGE GENERATION
4. NOISE ELIMINATION AND OBJECT EXTRACTION
5. EXPERIMENTAL RESULT AND CONCLUSION
6. REFERENCES



I. INTRODUCTION
II. CARRIER FREQUENC OFFSETESTIMATION IN OFDM SYSTEM
III. COMPENSATION ARCHITECTURE
IV. CONCLUSION
REFERENCE


1. INTRODUCTION
2. BASEBAND COMPLEX FILTER
3. RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. BASIC TECHNOLOGY
3. RF INTEGRATED CIRCUITS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. User Verification Using Square Measure Sequence of Hand Shape
3. Experiments
4. Conclusions
References



1. INTRODUCTION
2. THE PROPOSED METHOD
3. SIMULATION RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGMENT
6. REFERENCES



1. INTRODUCTION
2. NARROW CORRELATOR(NC) AND STROBE CORRELATOR(SC)
3. PROPOSED SCHEME
4. SIMULATION RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Parametric MIMO Channel Modeling
3. Principles of the Proposed Scheme
4. Unequal power allocation based on the proposed power discrimination function
5. Simulation Results
6. Conclusions
References


1. Introduction
2. Related Works
3. Web-based Collaborative Processor Development Environment
4. Interface Development for ISS Using Ajax
5. Evaluation
6. Conclusion
References


1. Introduction
2. Virtual Caching Technique
3. Replacement Policy in Proxy Server
4. Performance Evaluation
5. Conclusion
Acknowledgement
References


1. Introduction
2. DFT-based steering BF algorithm
3. Performance simulation
4. Conclusion
References


1. Introduction
2. DEFINITION OF MACRATE
3. ESTIMATION OF POWER SPECTRUM
4. RESULTS
5. CONCLUSION
6. REFERENCES



1. INTRODUCTION
2. SCHALKWIJK CODE
3. DATA COMPRESSION OF DITHER IMAGES USING A SCHALKWIJK CODE
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES



1. Introduction
2. Computer Simulation Approach
3. Numerical Results
4. Conclusions
References



1. INTRODUCTION
2. MERGED RF FRONT-END TOPOLOGY
3. MERGED RECEIVER RF FRONT-END DESIGN
4. SIMULATION RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. UNBALANCED STEPPED-IMPEDANCE RESONATOR
3. FILTER IMPLEMENTATION AND RESULTS
4. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES



1. Introduction
2. Arbitrage in Stock Market
3. Clustering by Cross-Correlation Function and Dynamic Programming
4. Experiments
5. Conclusions
References



1. INTRODUCTION
2. BACKGROUNDS
3. PROPOSED APPROACH
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
REFERENCES




1. INTRODUCTION
2. CONDITION OF METHODOLOGY ALGORITHMIC ADC CONVERSION
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. System Model
3. Online SNR and Fading Parameter Estimation
4. Numerical Results and Discussion
5. Conclusions
References


1. Introduction
2. Web Navigation
3. Modeling Web Navigation
4. Model Checking of Web Navigation
5. Experimental Result
6. Conclusion
References


1. Introduction
2. WinDistcc
3. Performance evaluation
4. Conclusion
References


1. Introduction
2. Orthogonal Frequency Division Multiple Access System
3. OFDMA System under Time-Varying Multipath Channel
4. Simulation Results
5. Conclusions
Acknowledgement
References


1. INTRODUCTION
2. MURC STRUCTURE
3. ACTIVE MURC LOW PASS FILTER WITH NOTCH CHARACTERISTICS
4. SIMULATION RESULTS
5. STABILITY CONSIDERATIONS
6. SENSITIVITY
4. CONCLUSION
6. REFERENCES




1. Introduction
2. Preprocessing
3. PCA and LDA
4. Fuzzy Membership Function Generation
5. Experimental Results
6. Conclusion
Acknowledgement
References



1. Introduction
2. Related Works
3. FSMI
4. Conclusion
References



1. INTRODUCTION
2. CROSS-COUPLED STEPPED-IMPEDANCE RESONATORS
3. IMPLEMENTATION AND RESULTS
4. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES


1. INTRODUCTION
2. CONVENTIONAL CIRCUIT
3. PROPOSED CIRCUIT
4. LINEARIZATION
5. SIMULATION RESULTS
6. CONCLUSION
REFERENCES



1. Introduction
2. Layout of the Circuit Element
3. Layout Generation Procedure
4. Experiment for Evaluation
5. Experimental Results
6. Conclusion
Acknowledgements
References



1. INTRODUCTION
2. RECOGNITION ALGORITHM
3. DEVELOPMENT OF VISION SYSTEM
4. CONCLUSION
5. REFERENCES




1. Introduction
2. Principles of operation
3. Simulation results by PSpice
4. Conclusions
5. Reference


1. Introduction
2. Feature s of direct chaotic communications
3. Code choosing criteria
4. ECC analytical performance
5. ECC performance in DCC systems
6. Conclusions
References


1. Introduction
2. DS-HIE processor
3. DS-HIE Compiler
4. Back-end compiler
5. Evaluation
6. Conclusion
Acknowledgement
References


1. Introduction
2. Supply Voltage and Structure of Opamps for Low Power
3. I/Q Amplifier Sharing
4. Class-AB Opamp with Charge Transfer Level Shifter
5. Layout and Simulation Results
6. Conclusions
References


1. Introduction
2. RS and Turbo Code
3. System Model
4. Simulation Result
5. Conclusion
References


1. Introduction
2. olfactory bulb model using P-HNMs
3. Results
4. Conclusion
5. Acknowledgement
6. References




1. INTRODUCTION
2. CHARACTER RECOGNITION
3. VISION SYSTEM
4. CONCLUSION
5. REFERENCES



I. Introduction
II. The Review of Low-Density Parity-Check (LDPC) Codes and Factor Graph
III. Scalable Decoder Architecture
VI. Conclusion
References


1. INTRODUCTION
2. PACS, DICOM and RFID
3. THE OVERALL PROPOSED SYSTEM DESIGN
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. CODING STANDARD
3. SYSTEM MODEL
4. SIGNAL TO INTERFERENCE RATIO ANALYSIS
5. AVERAGE BIT ERROR RATE
6. EXPERIMENTAL RESULT
7. CONCLUSIONS



1. Introduction
2. Power analysis for low power circuit design
3. Implementation of circuit level synthesizer using Pass-Transistor logic
4. Conclusion
References



1. INTRODUCTION
2. PROPOSED HEAD DETECTION AND TRACKING ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
5. REFERENCES


I. INTRODUCTION
II. CONTROLLER DESIGN
III. EXPERIMENTAL RESULTS
IV. CONCLUSIONS
REFERENCES


1. Introduction
2. The Flowchart of the Overall Algorithm
3. Structure of the Epipolar Geometry
4. Experimental Results
5. Conclusion
6. Acknowledgment
References


1. Introduction
2. Multiple-Input Floating-Gate MOSFET
3. Proposed Differential Amplifier
4. Simulation Results
5. Conclusion
Acknowledgment
References


1. Introduction
2. Issues in Low Supply Voltage Operation
3. OTA Design
4. Simulated and Measured Results
5. Conclusion
Acknowledgments
References


1. Introduction
2. Shot Detection
3. The Proposed Method
4. Simulation Results
5. Conclusion
References


1. INTRODUCTION
2. PROPOSED METHOD
3. DEFINE PATTERN
4. SUPERIMPOSED-TEXT CLASSIFICATION
5. PATTERN MATCHING
6. EXPERIMENT AND DISCUSSION
7. CONCLUSIONS AND FUTURE WORK
8. REFERENCES


1. INTRODUCTION
2. DESIGN OF WALKING GUIDE ROBOT WITH TACTILE DISPLAY
3. EXPERIMENT OF SHAPE RERCEPTION





I. INTROUCTION
II. FABRICATION
III. MEASUREMENT and DISCUSSION
IV. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES



1. INTRODUCTION
2. EXPERIMENTS
3. RESULTS
4. DISCUSSION
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. EXPENRIMENTS
3. RESULTS
4. DISCUSSION
5. CONCLUSION
6. REFERENCES



1. Introduction
2. Keyframe Selection
3. Experimental Results
4. Concluding Remarks
References





1. INTRODUCTION
2. DESCRIBING HUMAN GAIT MOTION
3. STATISTICAL MOMENTS OF CYCLOGRAMS
4. RESULTS
5. CONCLUSIONS


1. INTRODUCTION
2. MULTI-CHANNELS MPEG-4 CODEC
3. SPARTIAL SCALABILITY
4. SIMULATION RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. CHAIN CODES
3. HISTOGRAM-BASED CHAIN CODES
4. SHAPE RECOGNITION
5. SIMULATIONS
6. CONCLUSIONS
7. REFERENCES


1. Introduction
2. Neuron MOSFET
3. Output Resistance
4. Opareting Range
5. Evaluation of Proposed Circuit
6. Conclusion
Acknowledgment
References


1. Introduction
2. Voltage Up Converter
3. Simulation Results
4. Conclusion
Acknowledgment
References


1. Introduction
2. The Braille Block
3. The Detection of Braille Block
4. An Experiment and Result
5. Conclusion
References


I. Introduction
II. Previous Making Tools
III. Making Tools using MPEG-4 system
IV. Design of tools using MPEG-4
V. Conclusion
Reference


1. INTRODUCTION
2. PETRI NETS
3. MODELING OF COMMUNICATION PROTOCOL
4. CONCLUSION
5. REFERENCES





1. Introduction
2. Accessibility Problem
3. Configuration Inquiry Process
4. PNC selection using PNC candidate List
5. Conclusions
References



1. INTRODUCTION
2. h.264/AVC
3. PROPOSED SCHEME
4. SIMULATION and RESULT
5. CONCLUSION and FUTURE WORK
6. Acknowledgement
7. REFERENCES


1. Introduction
II. DSTM(Dual Stack Transition Mechanism) operation
III. Experimental Result
IV. Conclusion
References



1. INTRODUCTION
2. RELATED WORKS
3. ARCHITECTURE AND IMPLEMENTATION
4. AN IMPROVED DIRECT ADJUSTMENT ALGORITHM(DAA+)
5. SIMULATION
6. CONCLUSION
References





1. Introduction
2. System Architecture
3. System Implementation
4. System Evaluation
5. Conclusion and Future work
6. Acknowledgements
7. References


1. INTRODUCTION
2. WEB SERVICE-BASED HERMES ARCHITECTURE
3. DESIGN OF VIDEO PROVIDER
4. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. The Proposed Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Proposed Circuit
3. Simulation Results
4. Conclusions
References


1. Introduction
2. Architecture
3. EXPERIMENTAL RESULTS
ACKNOWLEDGEMENT
References


1. INTRODUCTION
2. MOTION ANALYSIS USING BI-DIRECTIONAL PREDICTION-INDEPENDENT FRAMEWORK
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCE
ACKNOWLEDGEMENT


1. INTRODUCTION
2. BACKGROUND
3. VERIFICATION OF PES HEADER IMPORTANCE
4. THE PES HEADER PROTECTION METHOD
5. PROTOCOL-SELECTIVE STREAMING
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Load-balancing Method for P2P system
3. Simulation
4. Conclusion
5. REFERENCES





1. Introduction
2. Securing Integrity of Mobile Agents
3. Mutual Authentication Algorithm
4. Secure Itinerating
5. Discussion and Conclusion
References



1. INTRODUCTION
2. LITERATURE REVIEW
3. PROPOSED DETERMINISTIC RATE CONTROL
4. NUMERICAL ANALYSES
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. SYSTEM MODEL
3. PERFORMANCE EVALUATION
4. NUMERICAL RESULTS
5. CONCLUSIONS


1. Introduction
2. The Principle of Pulse Skip Control and Circuit Composition
3. Experiments and results
4. Conclusion
Acknowledgement
References




1. INTRODUCTION
2. INTEROPERABILITY STANDARDS FOR ECGS
3. BED SYSTEM DESIGN AND DEVELOPMENT
4. RESULT OF PERFORMANCE TEST
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Search strategy in SVM learning
3. Bilinear Grid Search Algorithm
4. Experimental Results
5. Conclusion
Acknowledgements
References


1. Introduction
2. Structure of DXF File
3. Watermarking Algorithm
4. Experimental results
5. Conclusion
Reference


¥°. INTRODUCTION
¥±. DESIGN OF ULTRA-WIDEBAND LNA
¥². SIMULATION RESULTS
¥³. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. DESIGN OF ULTRA-WIDEBAND LNA
¥². SIMULATION RESULTS
¥³. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Proposed Algorithm
3. Conclusions
References


1. Introduction
2. Related Works
3. LBAR Routing Algorithm
4. Experimental Results
5. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. METHODOLOGY
3. Experimental results
4. Conclusions
5. References




1. Introduction
2. Modeling of Ground Area-fills and Measurements
3. Simulations
4. Conclusion
References


1. INTRODUCTION
2. SCENARIO AND PRAMETERS
3. INTERFERENCE LEVEL
4. SEPARATION DISTANCE
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. WIRELESS LOCAL LOOP
3. TRAFFIC MODEL
4. ADDRESS SCHEDULE ALGORITHM
5. SIMULATION RESULTS
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Proposed Low-complexity GA
3. Implementation of Genetic Algorithm Coprocessor
4. Conclusion
References





1. Introduction
2. Composition method of subsystem
3. An application example
4. The experiment results and an examination
5. Conclusion
References


1. INTRODUCTION
2. WEB MODEL AND WEB LOG FORMAT
3. MEASURES CRITERION OF SIMILAR DEGREE
4. WEB USAGE MINING
5. EXPERIMENTAL RESULTS AND CONCLUSIONS
REFERENCES


1. Introduction
2. Proposed Segmentation Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Logic computation with fusion gates
3. Fusion device consisting of SFQ circuits
4. Asynchronous Fusion device consisting of SFQ circuits
Acknowledgments
References


1. INTRODUCTION
2. FOREGROUND REGION DETECTION
3. PEOPLE DETECTION
4. EXPERIMENTAL RESULTS AND DISCUSIONS
5. CONCLUSION
Acknowledgment
6. REFERENCES


1 Introduction
2 Windowed Fourier Phase
3 The Proposed Matching Algorithm
4 Experimental Results
5 Conclusion
References


1. Introduction
2. Review of I©÷D©÷RS
3. Improvement
4. Experiments and Results
5. Conclusion
References


1. INTRODUCTION
2. PHYSIOLOGICAL-SIGNALS FOR HUMAN STATUS
3. WEARABLE SYSTEMS FOR U-HEALTHCARE
4. CONCLUSION
6. REFERENCES





1. Introduction
2. Previous method
3. The structure and its design method
4. The example of a design
4. Conclusion
References


1. INTRODUCTION
2. TURBO CODE AND PROBABILITY
3. ITERATIVE PHASE ESTIMATION IN A TURBO CODED SYSTEM
4. SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. INTRODUCTION
2. OVERVIEW OF JINI
3. GOALS OF JINI
4. The Concepts of JINI
5. OVERVIEW OF WIRELESS GRID
6. JINI BASED WIRELESS GRID COMPUTING MIDDLEWARE
7. Conclusion


1. Introduction
2. Point-to-multipoint ARQ with ALOHA-based Acknowledgement
3. Maximum Throughput Analysis
4. Numerical Results
5. Conclusions
References





1. INTRODUCTION
2. PHASE NOISE AND OFDM SIGNAL DETECTION
3. HOPFIELD NETWORK BASED DETECTION
4. SIMULATION RESULTS AND CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Preliminary
3. Structured Program Nets and Algorithm of Computin PARAdeg
4. Evaluation and Application of PARAdeg
5. Conclusion
Acknowledgement
References


1. Introduction
2. Image Pre-processing
3. Stereo Camera System & Algorithm of Depth Data Extraction
4. Simulation Result
5. Conclusion
References


1. Introduction
2. Proposed Frame Error Concealment
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Image dynamic range compression by combining gamma-corrected images
3. Experimental results
4. Conclusion
Acknowledgment
References


1. Introduction
2. Proposed extraction algorithm
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Preliminary
3. PARAdeg of WF-Nets
4. Computation of PARAdeg
5. Application of PARAdeg
6. Conclusion
Acknowledgement
References


1. Introduction
2. Face Detection Proposed Algorithms
3. Results
4. Conclusion and Future Work
5. REFERENCES





1. Introduction
2. Model for the IR Drop
2. Fast and Efficient IR-Drop Analysis
3. Experimental Results
4. Conclusion
Acknowledgment
References


1. Introduction
II. Traffic Engineering Scheduling
III. Shortest path Routing Algorithm for Traffic Engineering
IV. Conclusion
References



1. INTRODUCTION
2. HAND SHAPE EXTRACTION ALGORITHM
3. EXTRACTION OF 10 THPES OF BIOMETRIC FEATURE
4. EXPERIMENTS
5. CONCLUSION
REFERENCES


1. Introduction
2. Media Transmission over 3GPP/3GPP2
3. H.264 for Packet-based Network
4. Proposed Method
5. Experimental Results
6. Conclusion
References





1. INTRODUCTION
2. FACE DETECTION
3. EXPERIMENT RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Related Works
3. Interference Signal and WSN using LDPC Codes
4. Performance Analysis
5. Conclusion
6. REFERENCES


1. Introduction
2. Proposed Algorithm
3. Experiment Results
4. Conclusion
References


1. Introduction
2. H.264 Simplified 8¡¿8 Transform and Quantization
3. Conventional All Zero Block detection
4. Proposed 8¡¿8 transform based all zero block detection
5. Evaluation results
6. Conclusions
7. Acknowledgement
References


1. Introduction
2. Proposed Super-Resolution Image Reconstruction using Multi-camera
3. Experimental Results
4. Conclusions
Acknowledgement
References


1. Introduction
2. Structural Shape Feature of the License Plate, Symbol Mark and Vehicle Emblem.
3. Vehicle Feature Region Extractions and Segmentation Algorithm.
4. Distribution of Vehicle Symbol Mark, Emblem and Vehicle License Plate Recognition.
5.Experimental Results.
6.Conclusion
Reference


1. INTRODUCTION
2. APPROXIMATED PDF FOR SUM OF INDEPENDENT NAKAGAMI-M DISTRIBUTION
3. ANALYSIS OF THE BER PERFORMANCE OF EGC DIVERSITY RECEIVER WITH PHASE NOISE
4. NUMERICAL RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. OVERVIEW OF MODE DECISION IN H.264/AVC
3. PROPOSED FAST MODE DECISION ALGORITHM
4. Experimental Results
5. ACKNOWLEDGEMENT
6. REFERENCES




1. Introduction
2. Deaerator Model
3. Fault Detection and Diagnosis by an Adaptive Estimator
4. Application and Evaluation
5. Conclusion
References


1. INTRODUCTION
2. RECORDING THE FARMING DATA
3. CONSTRUCTING THE FARMING PLAN
4. EVALUATION OF SOLUTION QUALITY
5. CONCULSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES




1. Preface
2. UNIX Password Protection System
3. Password System with Fuzzy and Random Number
4. Conclusions
5. References


1. Introduction
2. Circuit Description
3. Circuit Analysis
4. Experimental Results
5. Conclusion
References





1. INTRODUCTION
2. h.264 DECODER
3. ARCHITECTURE EXPLORATION
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. CIRCUIT CONFIGURATION and OPERATIONS
3. SIMULATION RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Watermark Embedding Algorithm Proposed
3. Watermark Extraction Algorithm proposed
4. Performance evaluation
5. Conclusion
REFERENCES


1. Introduction
2. Proposed Selective Unsharp Masking
3. Determination of Parameters
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Color transferring
3. Color systems
4. Examples of transformation
5. Conclusion and future works
References


1. Introduction
2. Block matching motion estimation
3. Proposed low-power motion estimation architecture
4. Experimental result
5. Conclusion
References


1. INTRODUCTION
2. MODEL-BASED APPROACH TO SYSTEM TRACEABILITY(MAST)
3. CASE STUDY IN MAST
4. CONCLUSIONS
5. REFERENCES


I. INTRODUCTION
II. GAAS BASED 70 NM METAMORRHIC HEMTS
III. DAML-BASED HYBRID RING COUPLER
IV. SINGLE BALANCED ACTIVE MIXER
V. CONCLUSION
REFERENCES





1. Introduction
2. Principles and Circuits Configuration
3. Experimental Results and Discussion
4. Conclusion
References


1. INTRODUCTION
2. USABILITY ASSESSMENT METHODS
3. OVERALL USABILITY EVALUATION BY METRIC WEIGHT ESTIMATION
4. RESULTS
5. CONCLUSION
6. REFERENCES




1. INTRODUCTION
2. RELATED WORKS
3. GRADIENT BASED ISOPHOTE COMPUTATION
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Circuit Configuration
3. Noise Models
4.Simulation Result
5.Experimental Result
6. Conclusions
Acknowledgement
References





1. STATUS OF BROADBAND SERVICES IN JAPAN
2. CONFIGURATION OF OPTICAL ACCESS NETWORK
3. FUTURE DIRECTION OF R&D
4. RECENT DEVELOPMENTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Fabrication
3. RESULTS
4. APPLICATIONS
5. CONCLUSIONS
6. ACKNOWLEDGEMENTS
7. REFERENCES


1. Introduction
2. Preprocessing
3. Eigenfaces
4. Fuzzy Membership Function Generation
5. Experimental Results
6. Conclusion
Acknowledgement
References


1. Introduction
2. Active Net
3. BL-DCDAM (Batch-Learning Direct Color Distribution Applying Method)
4. Improvemnet Target Positon Estimate For Active Net Using by BL-DCDAM
5. Experimental Results
6. Conclusion
References


1. Introduction
2. Fundamental theory
3. Hardware implementation
4. Synthesis and implementation results
5. Conclusions
References


1. Introduction
2. Rate Control
3. Simulation Result
4. Conclusion
References


1. INTRODUCTION
2. OVERVIEW OF TFT-LCD TIMING CONTROLLER
3. PLTC : A FLEXIBLE PROCESSOR-BASED LCD TIMING CONTROLLER
4. SYSTEM IMPLEMENTATION
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Principle Component Analysis
3. Proposed Method
4. Experimental Results
5. Conclusion
References


1. INTRODUCTION
2. IMAGE IDENTIFICATION
3. DCT SIGN ONLY CORRELATION
4. SIMULATION
5. CONCLUSION
REFERENCES




1. INTRODUCTION
2. PROPOSED METHODS
3. SIMULATION RESULTS
4. CONCLUSION
5. ACKNOWLEDGMENT
6. REFERENCES


1. Introduction
2. Data Partitioning in H.264
3. H.264 for Wireless Network
4. Experimental Results
5. Conclusion
References





1. INTRODUCTION
2. DESIGN AND FABRICATION
3. RESULTS AND DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Methods
3. Experimental Results
4. Conclusion
References


1. Introduction
2. System Models
3. Statistical Analysis
4. BER Analysis
5. Numerical Results and Discussion
6. Conclusion
Acknowledgement
References


1. Introduction
2. Related Works
3. Overview of Flight Size Auto Tuning
4. Performance Evaluation
5. Conclusion
References


¥°. Introduction
¥±. The structure of the stereo camera
¥². The generation of the intermediate image
¥³. Experiment and consideration
¥´. Conclusion
References


1. INTRODUCTION
2. PROPOSED METHOD
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES





1. Introduction
2. Hybrid Forecasting System
3. Time Series Data
4. Experimental Results
5. Conclusion
References


1. INTRODUCTION
2. ALGORITHM OVERVIEW
3. REFINEMENT
4. SEGMENTATION
5. EXPERIMENTAL RESULTS
6. CONCLUSION
7. ACKNOWLEDGMENTS
8. REFERENCES


1. INTRODUCTION
2. CIRCUIT DESCRIPTION
3. EXPERIMENT RESULTS
4. CONCLUSION
5. REFERENCES



1. Introduction
2. Lifting
3. Proposed Lifting Architecture
4. Implementation and Result
5. Conclusion
Acknowledgement
References




1. INTRODUCTION
2. DESIGN OF 2¡¿2 SLOT ANTENNA[7]
3. DESIGN FABRICATION AND MEASUREMENT
4. ACKNOWLEDGEMENT
5. REFERENCES


1. Introduction
2. Conventional Chromatic-adaptation Models
3. Proposed Corresponding-color Reproduction Model
4. Experiments and Results
5. Conclusions
References


1. Introduction
2. The push-type packet compensation protocol
3. The slot distributed push-type packet compensation protocol
4. The average packet acquisition time of the slot distributed push-type packet compensation protocol
5. Numerical Results
6. Conclusion
Acknowledgment
References


¥°. INTRODUCTION
¥±. MIMO SYSTEM MODEL
¥². THE V-BLAST ALGORITHM
¥³. THE PROPOSED MODIFIED V-BLAST
¥´. SIMULATIONS
¥µ. CONLCUSION
REFERENCES


1. Introduction
2. Characteristics of Inkjet Printer
3. Compensation of Inkjet Printer
4. Experiments and Results
5. Conclusions
References


1. INTRODUCTION
2. DESIGN
3. SIMULATION AND RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Delay Prediction
3. Simulation and Results
4. Conclusions and FutureWorks
References



1. Introduction
2. MODEL FOR STUDY CF CN RATIO
3. CN RATIO OF FR OSCILIATOR
4. Summary
5. REFERENCES


1. INTRODUCTION
2. DOUBLE CAPACITIVE LAYERS DU overline{RC} STRUCTURE
3. DESIGNATION OF ALL PASS FILTER
4. SIMULATION RESULTS
5. STABILITY
6. SENSITIVITY
7. CONCLUSION
8. REFERENCES



1. Introduction
2. Design of a TMR-Based Logic-in-Memory Circuit
3. Design Example
4. Conclusion
References





1. INTRODUCTION
2. MEASUREMENT SETUP
3. RESULT AND ANALYSIS OF MEASUREMENT
4. DISCUSSION
5. REFERENCES


1. Introduction
2. Proposed algorithm
3. Experimental Results
4. Conclusion
Reference


1. Introduction
2. Schnorr-Euchner Sphere Decoding
3. Proposed Architecture
4. Conclusion
References


1. Introduction
2. Remote Healthcare Support System
3. RelatedWorks
4. System Description
5. System Architecture and Functional Details
6. Conclusion
Acknowledgement
References


1. Introduction
2. Feature extraction of visual cortex domain
3. Recognition of virtual polygon contours
4. Experimental Results
5. Conclusion
References


1. Introduction
2. The proposed antenna
3. Simulation and experimental results
4. Conclusions
5. REFERENCES





1. Introduction
2. RelatedWorks
3. Proposed FIFO
4. Simulation Results
5. Conclusion and Future works
6. Acknowledgement
References



1. INTRODUCTION
2. CIRCUIT DESCRIPTION AND OPERATION
3. SIMULATION RESULTS AND DISCUSSION
4. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. CIRCUIT DESCRIPTION AND OPERATION
3. SIMULATION RESULTS
4. IF BANDPASS FILTER
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES



1. Introduction
2. Network Architecture of the SIP over MPLS based network
3. TE-SIP server and GWLSR
4. COPS usage for QoS management between TE-Server and GWLSR
5. Conclusions and further work
References





1. INTRODUCTION
2. DESCRIPTION OF EXPERIMENT SYSTEM
3. SIGNAL PROCESSING
4. ULTRA WIDEBAND TRANSFER FUNCTION
5. EXPERIMENT RESULTS
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Method
3. Results
4. Discussion
References


1. Introduction
2. FTDMA Protocol in ISO/IEC 18000-3
3. Multicast Anticollision Protocol
4. Conclusion
References


1. Introduction
2. System Model
3. Theoretical analysis
4. Numerical Results
5. Discussion and Conclusion
References


1. Introduction
2. Reduced resolution look-up table
3. Hardware architecture
4. Conclusion
References


1. INTRODUCTION
2. ANALYSIS OF MICROSTRIP REFLECTRARRAY
3. Design Example
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. REFERENCES





1. Introduction
2. Antenna Array and Angular Distribution
3. Derivation of Spatial Correlation Functions
4. Numerical Results
5. Conclusions
References


1. INTRODUCTION
2. PRINCIPLE OF OPERATION
3. RESULTS
4. CONCLUSION
5. REFERENCE


1. Introduction
2. Related Works
3. System Architecture
4. Implementation
5. Conclusion & Future Work
6. REFERENCES



1. Introduction
2. Characteristics of Compressor
3. Computation Method of the Gain with a Polynomial Expression
4. Hardware Implementation
5. Experimental Results
6. Conclusion
References




1. INTRODUCTION
2. DESIGN OF HALF-WAVE LENGTH OPEN CIRCUITED STUBS BANDPASS FILTER
3. RESULTS AND DISCUSSIONS
4. ACKNOWLEDGEMENT
5. REFERENCES


1. Introduction
2. Internal Carotid Artery Segmentation
3. Carotid Artery Stenosis Measure
4. Experimental Results
5. Discussions and Conclusions
References


1. Introduction
2. Configuration of Nurse Call System
3. Terminal Part
4. Server Part
5. Experiment
6. Conclusions
Acknowledgements
References


1. Introduction
2. Transmission procedure of IEEE802.11DCF
3. Related works
4. A collision preventing broadcast protocol
5. Performance evaluation
6. Conclusion
Acknowledgement
References


1. Introduction
2. Kidney Segmentation
3. Kidney Tumor Segmentation
4. Experimental Results
4. Conclusions
References


1. INTRODUCTION
2. CHOPPING SYSTEM
3. PREBUNCHING SYSTEM
4. SUMMARY
6. REFERENCES





1. Introduction
2. PC Router Translation Syste
3. Queuing Model Characteristics
4. PC Router M/G/1/K Model
5. Experimental Results
6. Conclusion
References



1. INTRODUCTION
2. GPS SIGNAL MODEL
3. STRUCTURE OF JOINT SPACE-TIME RECEIVERS
4. MMSE RECEIVER
5. CONJUGATE GRADIENT SCHEME
6. SPACE-TIME JOINT KALMAN FILTER
7. NUMERICAL RESULTS
8. CONCLUSIONS
9. References


1. INTRODUCTION
2. RESOLUTION OF DPWM GENERATOR
3. PRINCIPLE OF THE RESULUTION IMPROVEMENT
4. DESIGN OF EXPERIMENTAL MODEL AND EXPERIMENTS
5. CONCLUSION



1. Introduction
2. Analysis of Arrayed Waveguide Grating based on Fresnel-Kirchhoff Diffraction and Fraunhofer Diffraction
3. Simulation Results and Discussions
4. Conclusion
References





1. INTRODUCTION
2. SIMPLIFIED DBR DESIGN
3. FILTER DESIGN AND RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Face Region Extraction Algorithm
3. Experiments and Discussion
4. Conclusion
References


1. INTRODUCTION
2. PRINCIPLE OF OPERATION
3. OPERATION INPUT RANGE
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Circuit descriptions
3. Simulation results and Discussion
4. Conclusions and future subject
5. References


1. Introduction
2. B-spline interpolations
3. Motion estimation using block matching
4. Experiments and results
5. Conclusion
References


1. INTRODUCTION
2. WIDEBAND LNA AND MIXER
3. INTERSTAGE MATCHING NETWORK
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Dynamic Strain Measurement
3. Thermal Stability of Strain Measur
4. Conclusion
References



1. INTRODUCTION
2. SECTION HEADINGS
3. SIMULATION AND EXPERIMENTAL RESULT
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. SIGNAL MODEL
3. REDUCED-RANK M-CG SCHEME
4. NUMERICAL RESULTS
5. CONCLUSION
APPENDIX
REFERENCE



1. Introduction
2. Experimental implementation of a redox microarray
3. Active wave propagation in the redox microarray
4. Conclusion
Acknowledgments
References





1. INTRODUCTION
2. IMPEDANCE PARAMETER EXTRACTION
3. TRANSMISSION ZERO CONDITION
4. BANDSTOP RESONATOR DESIGN AND MEASUREMENT
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Salient Object Segmentation
3. Experimantal Results
4. Conclusions
References


1. Introduction
2. Conventional Circuit
3. Transfer Characteristic
4. simulation
5. Conclusion
References


1. Introduction
2. Principle of Operation
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Image Feature Extraction/Description
3. Motion information based image retrieval system
4. Experiment and Results
5. Conclusion
References


1. INTRODUCTION
2. DESIGN OF PIN DIODE SWITCH
3. MEASUREMENTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. Threshold Scheme
3. Secret Sharing Storage System
4. Enhancement of the Reliability
5. Conclusion
ACKNOWLEDGMENT
References



1. INTRODUCTION
2. EVEN-ORDER CASE: LIU-WEI'S METHOD
3. ARBITRARY-ORDER CASE
4. CONCLUSION
5. REFERNECES


1. INTRODUCTION
2. TWO-DIMENSIONAL VFD FILTER
3. IMAGE INTERPOLATION
4. CONCLUSION
5. REFERENCES


1. Introduction
2. A Hierarchical Data Structure for Generation of Volume Data
3. Simulation
4. Conclusion
Acknowledgement
References





1. INTRODUCTION
2. DESIGN PROCEDURE
3. SIMULATED AND MEASURED RESULT
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Self Organization Mechanism
3. Experment and Discussion
4. Conclusion
References


1. Introduction
2. Theoretical Background
3. Proposed Sequence Generator
4. Numerical Experiments
5. Concluding Remarks
References


1. Introduction
2. Circuit descriptions
3. Simulation results and Discussion
4. Conclusions and future subject
References


1. Introduction
2. Principle of ¡°LCFONT.C¡±
3. Characteristics of ¡°LCFONT.C¡±
4. Adjustment for LCD characteristics
5. Registered color arrangements
6. Hint processing
7. Overlap with neighboring fonts
8. Evaluation of ¡°LCFONT.C¡±
9. Conclusions and Future Works
References


1. INTRODUCTION
2. METHOD
3. RESULT
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES





I. Introduction
II. Circuit Description
III. Simulation Results
IV. Conclusions
References


1. INTRODUCTION
2. COMPLEX PRI MODULATION TYPES[3,4,5]
3. PROPOSED COMPLEX PRIMODULATION RECOGNITION
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES




1. INTRODUCTION
2. SYSTEM ARCHITECTURE
3. PDA BASED HRV MONITORING
4. EXPERIMENTS AND RESULTS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. 2-D State-Space Digital Filters
3. Conventional Frequency Transformation and Its Drawbacks
4. Matrix Formulation of Reequency Transformation for 2-D State-Space Digital Filters
5. MATLAB Implementation
6. Conclusion
References





I. Introduction
II. System and Scanning data
III. Noise and Spikes Reduction
IV. Experimental Result
V. Conclusion
References


1. Introduction
2. Homography : projective geometry
3. Proposed method
4. Result
5. Conclusion
References


1. Introduction
2. Van der Pol oscillator with unstable timedelayed controller
3. Experimental system
4. Results of experiments
5. Conclusion
References


1. Introduction
2. Model
3. Result
4. Concluding Remarks
Acknowledgements
References


1. Introduction
2. Literature Review
3. Algorithm
4. Experimental Results
5. Discussion and Conclusion
References


1. INTRODUCTION
2. METHOD
3. HARDWARE CIRCUIT DESIGN
4. SOFTWARE DESIGN
5. Conclusion
Acknowledgement
References





1. Introduction
2. Related Work
3. Proposed Method
4. Implementation and Experimental Results
5. Conclusion and Future Work
References


1. Introduction
2. Spectrum Estimation Using Multitaper Method
3. Spectral Correlation Method for Signal Sensing
4. Simulations
5. Conclusion
5. ACKNOWLEDGEMENT
6. REFERENCES




1. INTRODUCTION
2. PROPOSED SYSTEM
3. SIMULATION RESULTS
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Modified Two-side PWR Technique
3. Steganography for Burst Error Condition
4. Evaluation
5. Conclusions
Acknowledgement
References





1. Introduction
2. MATERIALS AND METHODS
3. EXPERIMENTS & RESULTS
4. DISCUSSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Previous Works
3. Tree-Based Bus Splitting
4. Conclusions
References


1. Introduction
2. MPLD Architecture
3. Design of Prototype MPLD
4. Evaluation
5. Conclusions and Future Works
Acknowledgement
References


1. Introduction
2. The Proposed Flip-Flop
3. Experimental Results
4. Conclusion
Acknowledgements


1. Introduction
2. Hash Function Algorithm Standard (HAS160)
3. VLSI Design of HAS-160
4. Performance & Conclusions
Acknowledgements
References


1. INTRODUCTION
2. THEORY
3. EXPERIMENT SYSTEM
4. RESULT
5. DISCUSSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Principal Component Analysis for Hyperspectral Images
3. Experiments
4. Conclusion
Acknowledgement
References


2. INTRODUCTION
2. OVERVIEW OF PROPOSED RANGING PROCESS
3. PROPOSED RAGNGING METHOD
4. SIMULATION RESULTS
5. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES




1. INTRODUCTION
2. METHODE
3. RESULTS & DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Firewall and Relational Algebra Background
3. Mapping Rules into Relation
4. Firewall Policy Anomaly Discovery
5. Anomaly Removing and Rule Combinations
6. Conclusion and Future Work
References





1. INTRODUCTION
2. DESIGN OF DFMT
3. IMPLEMENTATION OF DFMT
4. EXPERIMENT AND RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Proposed Architecture and Algorithm
2. Circuit Design and Simulation Results
3. Conclusion
Acknowledgement
References


¥°. INTRODUCTION
¥±. MULTI-OBJECTIVE OPTIMIZATION
¥². GEOMETRIC PROGRAMMING
¥³. CIRCUITMODELING FOR GP
¥´. EXAMPLE: AN OP-AMP DESIGN
¥µ. MULTI-OBJECTIVE OPTIMIZATION USING GP
¥¶. OPTIMIZATION RESULTS
¥·. CONCLUSIONS
REFERENCES


1. Introduction
2. Fixed-Outline Floorplanning Overview
3. Objective Functions for Fixed-Outline Floorplanning
4. Experimental Results
5. Conclusion
References


1 Introduction
2 Concepts of Symmetric RNS with SD Number Representation[1, 2]
3 Booth Recoding
4 On VLSI Implementation and Performance Evaluation
5 Conclusion
References


1. INTRODUCTION
2. F-IMEHD
3. PROPOSED WIRELESS CHARGER
4. EXPERIMENT AND RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. MAC Schemes for Best Effort Service
3. Collision Resolution Algorithms for Resource Request
4. Performance Evaluation
5. Conclusions
References


1. Introduction
2. System Overview
3. Transmitter Design
4. Receiver Design
5. Implementation of Wireless Canvas Prototyping Testbed using LR-UWB Transceiver
6. Conclusion
7. REFERENCES


1. Introduction
2. EREC(Error Resilient Entropy Coding)
3. Proposed Method
4. Simulation Results
5. Conclusion
6. REFERENCES



1. Introduction
2. Conventional Colorimetric Characterization of Camera
3. Proposed Colorimetric Characterization of Camera
4. Experiments and Results
5. Conclusions
References





1. INTRODUCTION
2. DESIGN OF THE VGA CAPSULE ENDOSCOPE SYSTEM
4. EXPERIMENTS AND RESULTS
5. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Ogg Vorbis Overview
3. Software Simulation
4. Decoder Architecture
5. Implementation Result
6. Conclusion
References


1. Introduction
2. Low Power MAC Operator
3. Architecture for Fault-Tolerance
4. Performance Evaluation
5. Conclusion
ACKNOWLEDGEMENT
Reference


1. Introduction
2. Concept of Gain based Delay Balancing
3. Experimental Results
4. Conclusion
Acknowledgement
References


1. Introduction
2. Previous Survivor Path Architecture
3. Storage Reduction in Survivor Path Architecture
4. Pipelined Forward Trace Architecture
5. Experimental Results
6. Conclusions
References


1. INTRODUCTION
2. MYOELECTRIC ACTIVITY IN INTESTINES
3. LOCOMOTION OF ELECTRICAL STIMULI CAPSULE
4. EXPERIMENTS AND RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Performance of the SIC Scheme
3. Detection Order Allocation Based on the Forward Pilot Signal
4. System Model and Numerical Results
5. Concluding Remarks
Acknowledgement
References



1. INTRODUCTION
2. SPORTS VIDEOS
3. PROPOSED METHODS
4. EXPERIMENTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. EXPERIMENTAL METHOD
3. RESULTS AND DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. Theory
3. Saturating resistive element
4. Simulation and discussions
5. Conclusion
Acknowledgement
Reference





1. INTRODUCTION
2. WIRELESS CAPSULE ENDOSCOPE
3. DESIGN AND FABRICATION OF THE RECEIVER
4. EXPERIMENT AND RESULT
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Enhanced Fuzzy Supervised Learning Algorithm Using Self-Organization
3. Experiments and Performance Analysis
4. Conclusions
References


1. Introduction
2. Noise cancellation
3. Fine-grained pipeline design
4. Evaluation Results
5. Summary
Acknowledgements
References


1. Introduction
2. Single-channel H.264 Decoder
3. Multi-channel H.264 Decoder
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Setting of problem
3. Proposed method
4. Experimental results
5. Conclusion
References


1. INTRODUCTION
2. IMPLANTABLE MICROPHONE DESIGN
3. FABRICATION
4. MEASUREMENT RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Modified FxLMS based cross-updating ANC system with online secondary-path modeling
3. Simulations
4. Concluding Remarks
References



1. INTRODUCTION
2. CONTROL RESPONSE
3. CONTROL ANTICIPATION PARAMETER
4. CONCLUSIONS
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. System Structure and Operating Principle of USN/RFID Module
4. Design and Fabrication of USN/RFID Modules
5. Conclusion
Acknowledgments
References



1. Introduction
2. Circuit configuration
3. Circuit analysis
4. Simulation results
5. Experiments
6. Conclusion
References





1. INTRODUCTION
2. DESIGN OF THE DMA-BASED FIR FILTER
3. EXPERIMENT & IMPLEMENTATION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. SOM Algorithms
3. Numerical Simulations of SOM Algorithms
4. Two-stage SOM for Clustering
5. Conclusions
References


1. Introduction
2. MVL Neural Networks
3. MVL Neuron Clock Converters
4. Conclusion
References


1. Introduction
2. Ternary model neuron and its firing rule
3. Neural Network of Ternary Arithmetic Logic Unit
4. Comparison between the TALU and a binary ALU
5. Conclusion
References


1. Introduction
2. Preliminaries
3. Stability conditions
4. Proof of theorems
5. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. Sound delivery paths in IMEHDs
3. EXPERIMENT SETUP
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Active Pixel with Electric Shutter
3. CDS with current subtractor
4. Conclusion
Acknowledgement
References



I. Introduction
II. System Composition
III. Experiment and Consider
IV. Conclusion
References


1. INTRODUCTION
2. MEMS TACTILE SENSOR SYSTEM
3. TEST RESULTS AND DISCUSSION
4. CONCLUSION
5. REFERENCES



1. Introduction
2. Migration Flow
3. Object Resizing Technique
4. Experimental Results
5. Summary and Conclusions
References





1. INTRODUCTION
2. WIRELESS SYSTEMS
3. EGG MEASUREMENT SYSTEM
4. EXPERIMENTS AND RESULTS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Proposed Method
3. Experiments
4. Method Selection
5. Experiments of method selection
6. Conclusion
References


1. Introduction
2. Operation of the proposed OTA
3. Application to an oscillatory CNN
4. Conclusion
Acknowledgment
References


1. Two hidden layers BP-ANNs algorithm
2. NoC structure for BP-ANNs
3. Evaluation of this system
4. FPGA Implementation and Conclusions
Acknowledgement
References


1. Introduction
2. The Inflow Forecasting by the Neural Network
3. Kanogawa Dam Model
4. Inflow Forecasting Using Wide Area Rain Data
5. Radar-AMeDAS Data
6. The Experiment Result
7. Conclusion
References


I. INTRODUCTION
II. CONVENTIONAL CIRCURR I
III. CONVENTIONAL CIRCUIT II
IV. PROPOSED LEVEL-SHIFTER CIRCUIT
V. SIMULATION RESULT
VI. CONCLUSION
REFERENCES





1. Introduction
2. OFDM Baseband Model
3. Channel Estimation with Timing Offset
4. Computer Simulations
5. Conclusions
Acknowledgements
References



1. INTRODUCTION
2. PROPOSED SYSTEM
3. EXPERIMENT ON CAVE SYSTEM
4. CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. SYSTEM EMC ENVIRONMENT
3. EMC CONTROL
4. EVALUATION PHILOSOPHY
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES



1. Introduction
2. Related Work
3. WFilter(Weighted Filter)
5. Conclusion
References





1. INTRODUCTION
2. WORKLOAD
3. INSTRUCTION
4. IMPLEMENTATION AND EXPERIMENTAL RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Conventional PFD Circuit
3. Design of the Phase Detector Circuit
4. Comparison of Conventional PFD and Proposed PD
5. Conclusion
References


2. CSNNRF Configuration
3. The filtering of the speech signal by the CSSNRF
4. Performance evaluation of the filtering processing
5. Conclusion
References


1. Introduction
2. Algorithm and Approach
3. Modeling a Beta Distribution
4. Conclusions and FutureWork
References


1. Introduction
2. Circuit Description and Operation
3. Temperature-Stable Linear OTA
4. Experimental Results and Discussions
5. Conclusions
References


1. INTRODUCTION
2. FUZZY P©÷ID
3. SOFT-SWITCHING FUNCTION
4. SIMULATION
5. CONCLUSION
6. REFERENCES





1. INTRODUCTION
2. NOISE RECONSTRUCTION SYSTEM
3. THE STEP SIZE CONTROL USING SNR ESTIMATION
4. SIMULATION RESULTS
5. CONCLUSION
References



1. System Level Design
2. Transmitter System
3. Receiver System
4. Performance Test Result
5. Conclusion
6. REFERENCES


1. INSTRUCTION
2. METHODOLOGY
3. RESULT AND DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. Coventional J2J Data Hiding
3. Proposed Method
4. Simulation
5. Further Improvement of Image-Quality
6. Conclusions
References





1. INTRODUCTION
2. ROBOT DYNAMICS
3. CONTROLLER DISIGN
4. ILLUSTRATIVE EXAMPLE
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Mixer Circuit using LC resonator
3. Improvement Method
3. Proposed Circuit
4. Simulation
5. Conclusion
References


1. Introduction
2. BE method
3. BE-based evaluation of QA
4. Experiments
5. Discussions
6. Conclusion
Acknowledgements
References


1. Introduction
2. An overview of RitsQ QA system
3. Answer extraction module
4. Experiments
5. Discussions
6. Conclusion
References


1. Introduction
2. Modeling of Optical Waveguide Losses
3. Signal Timing Skew Calculation
4. Results and Analysis
5. Conclusion and Future Work
6. Acknowledgement
References


1. INTRODUCTION
2. MICRO CONTROLUNIT : ATMEGA 128
3. THE ULTRASONIC WAVES SENSORS
4. WIRELESS COMMUNICATION USING RF MODULE
5. THE SYSTEM H/W AND S/W DESIGN
6. CONCLUSION
7. REFERENCES





1. Introduction
2. Signal Energy in a Transformed Domain
3. Proposed IQGW Scheme
4. Experimental Results
5. Conclusions
References



1. INTRODUCTION
2. METHODS
3. RESULTS
4. DISCUSSION AND CONCLUSION
5. REFERENCES


1. INTRODUCTION
2. KEY IN EMBEDDED SYSTEM DESIGN
3. CO-DESIGN METHODOLOGY FOR ADVANCED EMBEDDED SYSTEMS
4. SYSTEM SYNTHESIS AND HARDWARE/SOFTWARE CODESIGN
5. DESIGN TECHNOLOGY
6. IDENTIFICATION OF MAIN COMPONENTS AND THE NOTATION
7. CO-MODELING AND DETAILED DESIGN
7. CONCLUSION
7. REFERENCES



1. Introduction
2. Circuit Design Description and Operation
3. Experiment Result and Discusion
4. Conclusions
References





1. Introduction
2. Device Structure and Operation Mechanism
3. Simulation Results and Discussion
4. Conclusions
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. System Architecture
3. Data Recovery Algorithm
4. Circuit Implementation and Simulation
5 Conclusion
Acknowledgement
Reference


1. Introduction
2. Used Audio Coders for Proposed Audio System
3. Proposed Audio System for Multipurpose
4. Performance Evaluation
5. Conclusion
References


1. Introduction
2. Collection of Game Evaluation Terms
3. Game Playing Experiment
4. Analysis and Selection of Evaluation Terms
5. Conclusion
References


1. Introduction
2. Conventional ring oscillator
3. Technique to achieve high-speed operation
4. Proposed circuit
5. Amplitude conversion circuit
6. Simulation
7. Conclusion
Reference


1. INTRODUCTION
2. PHOTOSENSOR STRUCTURE
3. TEST RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES





1. Introduction
2. The Proposed ADC
3. Simulation Results
4. Conclusion
References



1. INTRODUCTION
2. RESEARCH METHODOLOGY
3. SIMULATION AND RESULTS
4. CONCLUSION
6. REFERENCES


ABSTRACT
1. INTRODUCTION
2. FABRICATION
3. RESULTS
4. CONCLUSIONS
5. ACKNOWLEGMENT
6. REFERENCES



1. Introduction
2. Theory
3. Design
4. Conclusion
Acknowledgment
References





I. Introduction
II. Development of gateway
III. Conclusion
References


1. Introduction
2. Invertible Meshwarp Algorithm
3. Facial Pose Transformation
4. Evaluation
5. Conclusion
References


1. Introduction
2. Related Work
3. Conditional Access System
4. The Proposed Protocol
5. Security and Performance Analysis
6. Conclusions
References


1. Introduction
2. Data Services and Applications
3. System Description
4. Implementation Results
5. Conclusion
References


1. Introduction
2. Model-Based Reconstruction
3. Experiment
4. Conclusion
References


1. Introduction
2. Triple mode cavity resonator
3. Design of triple mode cavity resonator BPF
4. Design & Test of BPF
5. Conclusion
References





1. Introduction
2. Proposed Method
3. Experimental Results
4. Conclusion
References



1. INTRODUCTION
2. THREE-DIMENSIONAL PLACEMENT PROBLEM
3. PLACEMENT ALGORITHM
4. EXPERIMENT
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. SET MODEL
3. MODEL VIRIFICATION
4. SIMULATION AND RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES



1. Introduction
2. Principles of the Space-time Decision-Directed Equalizer
3. Principles of NLMS-like Affine Projection Algorithm
4. NLMS-like APA using Iterative Hyperplane Projection Scheme
5. Simulation Results
6. Conclusions
Acknowledgement
Reference





1. INTRODUCTION
2. PHASE INTERPOLATION
3. THE PROPOSED DDS
4. SIMULATION RESULTS
5. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. The Control System of the Airship
3. Setup of the Task
4. Experiments
5. Conclusion
Acknowledgements
References


1. Introduction
2. Related Works
3. Architecture of VSS
4. Conclusion and Future Work
References


1. Introduction
2. Multimedia specific scheduling
3. Simulations
4. Conclusion
Acknowledgement
Reference


1. Introduction
2. Characteristics of Tsunami for Visualization
3. Tsunami Model by Soliton and Particle
4. Numerical Experiments
5. Conclusion
Acknowledgements
References


1. INTRODUCTION
2. PHASE NOISE AND ITS EFFECTS ON OFDM SYSTEM
3. HOPFIELD NETWORK AS A COMPONENT TO MITIGATE PHASE NOISE
4. NUMERICAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES





1. Introduction
2. Electrical Die Sorting (EDS)
3. Fail pattern analysis
4. Chip level fail pattern classification
5. Wafer level fail pattern classification
6. Conclusion
References



1. PAGE SETUP
2. HARDWARE ARCHITECTURE
3. DESIGN AUTOMATION
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
6. REFERENCES


1. INTRODUCTION
2. THE DECODING TIME PROPORTION OF MPEG-4 AUDIO
3. THE DE-INTERLEAVING N/4-POINT IFFT ALGORITHM
4. IMPLEMENTATION OF IMDCT COPROCESSOR
5. SIMULATION AND PERFORMANCE
6. EXPERIMENTAL RESULT
7. CONCLUSIONS
8. REFERENCES



1. Introduction
2. The Algorithm for Pattern Recogniton
3. The Parallel Architecture for Pattern Recogniton
4. Experimental Results
5. Conclusion
References





1. INTRODUCTION
2. OPTICAL INTERLEAVER
3. OPTIMAL DESIGN
4. CONCLUSION
ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Implemented System
3. Experiment
4. Concluding Remarks
References


1. INTRODUCTION
2. GEOMETRY IMAGE
3. PROPOSED METHOD
4. THE ASSESSMENT OF ERROR
5. RESULT
6. CONCLUSION
7. REFERENCES


1. INTRODUCTION
2. VECTOR QUANTIZATION
3. PROPOSED METHOD
4. EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Mahalanobis-Taguchi Strategy
3. The Proposed Method
4. Experiment
5. Conclusion
References


1. INTRODUCTION
2. THE 3GPP TURBO CODE
3. STOPPING CRITERIA AND SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES





1. Introduction
2. Electrical stimulus in the intestine
3. Implementation of telemetry capsule and external controller for electrical stimulus
4. Experiment and result
6. Conclusion
Acknowledgements
References



1. Introduction
2. Microscopic Dynamic Voltage Scaling
3. Reconstruction of Huffman Decoding Table
4. Simulation and Results
5. REFERENCES


1. INTRODUCTION
2. CORPUS SPECIFICATION
3. EVALUATION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. The proposed multi-adaptive filter
3. Implementation of multi-adaptive filter on DSK6711 board
4. EEG Feedback control on DSP board
5. Simulation and experimental result
6. Conclusion
7. Acknowledgment
References





1. INTRODUCTION
2. DESIGN OF ADC ARCHITECTURE
3. PRELIMINARY RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Virtual Angioscopy for Carotid Artery
3. Experimental Results
4. Conclusion
References


1. Introduction
2. Ate pairing with Freeman curve
3. Extension field for Freeman curve
4. Type I-X AOPF for Freeman curve
5. Simulation
6. Conclusion
Acknowledgment


1. Introduction
2. Receive Beamforming Principle
3. Lookup Table Approaches
4. General Parametric Approach
5. Implementation Results and Discussions
References


1. Introduction
2. Clustering System
3. Load Balancing Using A Work Pool
4. Experiment And Result
5. Conclusion
6. References


1. INTRODUCTION
2. VCO description
3. Duty Controllable Buffer(DCB) description
4. Simulation results
5. Conclusion
6. ACKNOWLEDGEMENT
7. REFERENCES




1. Introduction
2. A 3rd-order syllabic companding elliptic filter
3. Circuit implementation
4. A Current-Mode Peak Detector
5. Simulation Results
6. Conclusions
References



1. INTRODUCTION
2. BACKGROUND
3. THE ARCHITECTURE OF TLDP
4. SYSTEM IMPLEMENTATION AND EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. SPEECH INTERFACE WITH ECHO CANCELLER
3. EXPERIMENT AND DISCUSSION
4. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES



1. Introduction
2. Multiple-Valued Logic Neural Networks
3. Conclusion
References
Acknowledgement





1. INTRODUCTION
2. RS ENCODER ARCHITECTURE
3. RS DECODER ARCHITECTURE
4. SYNTHESIS AND SIMULATION RESULT
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. General Instructions
3. Experimental result and consideration
4. Conclusion
References


1. Introduction
2. System Configuration
3. Method
4. Results and Discussion
5. Conclusion
References


1. Introduction
2. System Configuration
3. Method
4. Experimental Results
5. Conclusion
References


1. Introduction
2. Classifying Protein Crystallization States
3. A Classifying Method based on Texture Information
4. Experiment
5. Conclusion
References


1. Introduction
2. Block-Constrained TCQ
3. Predictive BC-TCQ for LSF Coding
4. Coding Results
5. Conclusions
6. References





1. INSTRUCTION
2. THE PROPOSED ARCHITECTURE OF FRACTIONAL-N FREQUENCY SYNTHESIZER
3. BLOCK DESIGN OF FREQUENCY SYNTHESIZER
4. SIMULATION AND LAYOUT
5. CONCLUSION
REFERENCES



1. Introduction
2. Background and Problem
3. The Proposed Scheme
4. Performance Evaluation
5. Conclusion
6. References


1. INTRODUCTION
2. U-HEALTHCARE CONCEPT
3. BLUETOOTH SPECTIFICATIONS
4. BLUETOOTH NETWORKING OF TECHNOLOGY
5. SYSTEM DESIGN AND TEST
6. CONCLUSION
7. REFERENCES



1. INTRODUCTION
2. FMCW RADAR MODULE DESIGN
3. MEASUREMENTS
4. RESULTS
REFERENCES





1. Introduction
2. Clock Generator Block
3. Code Generator & Offset Block
4. PPM or BPSK
5. Orthogonal UWB pulse generator block
7. Chip fabrication and Test
Conclusion
Reference


1. Introduction
2. Image reconstruction methods
3. Experimental evaluation
4. Results
5. Discussions
6. Conclusion
References


1. Introduction
2. Multi-Matcher DWT On-Line Signature Verification System
3. Threshold Equalization
4. Evaluations
5. Conclusion
References


1. Introduction
2. Extracting Brain Wave
3. EEG in Frequency Domain
4. Authentication System
5. Verification Experiments
6. New Feature Vector
7. Conclusions
References


1. Introduction
2. Calculation of potential distributions and the capacitance
3. Image reconstruction
4. Sensor and objects for experiments
5. Experimental results
6. Conclusions and discussion
References


1. INTRODUCTION
2. THE PROPOSED CIRCUITS
3. SIMULATION RESULTS
4. CONCLUSIONS
5. REFERENCES





1. INTRODUCTION
2. DESIGN AND FABRICATIONS
3. MEASUREMENTS
4. CONCLUSION
REFERENCES



1. Introduction
2. Background and Problem
3. The Proposed Scheme
4. Performance Evaluation
5. Conclusion
6. References


1. INTRODUCTION
2. PROPAGATION EXPERIMENT AND MEASUREMENT ENVIRONMENT
3. DATA PROCESSING AND ANALYSIS RESULTS
4. CONCLUSION
5. REFERENCES



1. GENERAL INFORMATION
2. PROCESS OF THE WAVEGUIDE ARRAY ANTENNA
3. FABRICATION OF THE PROPOSED ANTENNA
4. CONCLUSION
REFERENCES




1. INTRODUCTION
2. THE PROPOSED FM RECEIVER CIRCUIT
3. SIMULATION RESULT
4. EPGA IMPLEMENTATION
5. CONCLUSION
6. REFERENCES


1. Introduction
2. The Main Operations
3. Experimental Results
4. Conclusion
References


1. Introduction
2. Fault injection design
3. Fault tolerance SOAP
4. Simulation results
5. Experimental results
6. Conclusion
References


1. Introduction
2. Overview of IEEE 802.16j
3. Proposed Scheme
4. Conclusion
Acknowledgment
References


1. Introduction
2. Robust Adaptive Processing Algorithm
3. Experiments
4. Summary
References


1. INTRODUCTION
2. DEVICE DESCRIPTION
3. RESULTS AND DISCUSSION
CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES





1. Introduction
2. Description of IP-Grouping scheme
3. Modeling
4. Numerical Results
5. Conclusion
References



1. INTRODUCTION
2. HARDWARE IMPLEMENTATION
3. SOFTWRE IMPLEMENTATION
4. EXPERIMENT IN SILVER TOWN
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES


1. INTRODUCTION
2. RFID and X-Internet
3. RFID Network Information Security
4. PROPOSED SERVICE INFORMATION SYSTEM
5. System Material and Result
6. Conclusion
7. ACKNOWLEDGEMENT
8. REFERENCES



1. Introduction
2. Circuit Description
3. Simulation Results
4. Conclusion
Acknowledgement
References





1. INTRODUCTION
2. ARCHITECTURE DESIGN
3. CIRCUIT DESIGN
4. SIMULATIONS AND COMPARISONS
5. SUMMARY
6. REFERENCES


1. INTRODUCTION
2. VECTOR QUANTIZATION-PYRAMID VECTOR QUANTIZATION
3. PREDICTIVE VQ-PVQ
4. EXPERIMENTAL RESULTS
5. CONCLUSIONS
REFERENCES


1. Introduction
2. Unequal Error Protection(UEP) system and Hierarchical modulation
3. Bit split method
4. Simulation result
5. Conclusion
References


1. Introduction
2. Group Control Algorithm
3. Simulation Results
4. Conclusions
References


1. Introduction
2. The general structure of MPEG-4 AAC encoder
3. The proposed audio encoder algorithm
4. Implementations and results
5. Conclusion
References


1. INTRODUCTION
2. PV MEASUREMENT
3. EFFECTS OF INSTALLATION LOCATION
4. NUMERICAL RESULTS
5. CONCLUSIONS
6. REFERENCES





1. Introduction
2. Halftoning Techniques
3. Proposed Technique
4. Simulation Result
5. Conclusion
References



1. INTRODUCTION
2. CONVENTIONAL SLOTTED-ALOHA BASED SCHEMES
3. PROPOSED SCHEME
4. SIMULATION RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. Operating Frequency Considerations
3. RFID Standard Considerations
4. Implementation of the Reader
5. Performance & Conclusion



1. Introduction
2£®Conventional Method
3. Proposed Method
4. Simulation
5. Conclusion
References





1. INTRODUCTION
2. DEVICE FABRICATION
3. RESULTS AND DISCUSSION
4. DESIGN CONSIDERATION OF I-MOS DEVICES
5. CONCLUSIONS
6. ACKNOWLEDGMENTS
7. REFERENCES


1. Introduction
2. Realization of Sound Localization Using Transaural Reproduction
3. HRTF approximation using IIR filters
4. Distance Localization Experiment
5. Result
6. Conclusion
Acknowledgments
References


1. Introduction
2. Problem
3. Algorithm
4. Simulation Results
5. Conclusion
Acknowledgements
References


1. Introduction
2. Structure and Operation of Elevator Systems
3. Control of New Elevator Systems
4. Conclusions and Further Research
References


1. Introduction
2. Measurements of HRTF
3. Feature Extraction of HRTF
4. Effective Coefficient Setting for 3D Sound Movement
5. Conclusion
References


1. INTRODUCTION
2. PASSIVE EQUIVALENT CIRCUIT OF THE OTA-BASED FLOATING INDUCTOR UNDER THE EFFECT OF OTA'S NONIDEALITIES
3. THE VERIFICATION OF THE PASSIVE EQUIVALENT CIRCUIT
4. FURTHER STUDY
5. CONCLUSION
6. ACKNOWEDGEMENT
7. REFERENCES




1. Introduction
2. Orthogonal Frequency Division Multiplex(OFDM)
3. Trellis-Coded OFDM
4. Simulation and Results
5. Conclusions
References



1. INTRODUCTION
2. ARCHITECTURAL DESIGN PROCESS
3. COMPONENT DEVELOPMENT PROCESS


1. Introduction
2. EPCIS & Security
3. RFID Network Security
4. The Certificate repository for RFID Network testbed
5. Conclusion
References



1. Introduction
2. Class Area
3. Size of Class Area
4. Experimental Analysis
5. Conclusion
References
Appendix A: Disassembled code for probe classes





1. INTRODUCTION
2. PRINCIPLE OF OPERATION
3. SIMULATION RESULTS AND DISCUSSIONS
4. CONCLUSIONS
5. REFERENCES


1. Introduction
2. Outline of CN-SNM
3. Techniques for Improving Sharp Bend Property of Air-Hole Type PC Waveguide
4. Conclusion
References


1. Introduction
2. Target Problem
3. Approach
4. Exemplar-Based Policy Representation
5. Simulation-based Optimization
6. Visualization of EBP
7. Conclusion
References
Appendix : Selection of the Best Feature Vector


1. Introduction
2. Mapping Function
3. Psychological Features (Impressions)
4. Image Features
5. Learning and validation
6. KANSEI based Image Retrieval
7. Conclusions
Acknowledgement
References


1. Introduction
2. PHEMT Device
3. Single power supply MMIC PA
4. Conclusions
References


1. INTRODUCTION
2. ELECTRONICALLY TUNABLE MULTIPLE-OUTPUT FTFN(ET-FTFN)
3. PROPOSED FILTER CONFIGURATION
4. EFFECTS OF THE ET-FTFN NON-IDEALITIES
5. SIMULATIONS RESULTS
6. CONCLUSION
7. ACKNOWLEGMENT
8. REFERENCES





1. Introduction
2. Polar Predistortion
3. Calculation of Distorted I and Q
4. Conclusion
References



1. INTRODUCTION
2. MAIN SUBJECT
3. CONCLUSIONS
4. REFERENCES


1. INTRODUCTION
2. COHERENT OPTICAL FIBER SENSOR
3. EXPERIMENT
4. RESULTS
5. CONCLUSION
6. REFERENCES



1. Introduction
2. System Definition
3. Feature identification and extraction
4. Experiments
5. Conclusion
Acknowledgement
References





1. INTRODUCTION
2. PROPOSED CONFIGURATION
3. NON-IDEAL ANALYSIS
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Design of CPLD module in the capsule
3. Design of external module
4. Implementation of whole system
5. Experiment and result
Acknowledgements
References


1. Introduction
2. Proposed Fast Algorithm
3. Experimental Results
4. Conclusion
5. Acknowledgment
References


1. Introduction
2. Related Work
3. Lips Feature and Shape of Template
4. Evolutionary Video Processing
5. Automatic SD-Control for Video Processing
6. Experiments
7. Summary
References


¥°. Introduction
¥±. The QFT algorithm
¥². Experimental results
¥³. Conclusion
Reference


1. INTRODUCTION
2. PROPOSED CONFIGURATION
3. TRACKING ERROR ANALYSIS AND SENSITIVITY
4. SIMULATION RESULTS
5. CONCLUSION
6. REFERENCES





1. Introduction
2. Fundamentals
3. Classification of irreducible cubic polynomials over prime field
4. Conclusion
References
Appendix



1. INTRODUCTION
2. EXPERIMENTS
3. RESULTS AND DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. INTRODUCTION
2. FABRICATION
3. EXPERIMENTAL RESULTS
4. ACKNOWLEDGEMENT
5. REFERENCES



1. Introduction
2. JPEG 2000 coding
3. Proposed Partial-Scrambling method
4. Experimental results
5. Conclusions
Acknowledgement
References




1. INTRODUCTION
2. CIRCUIT CONFIGURATION
3. EFFECTS OF THE CDBA NON-IDEALITIES
4. SIMULATION AND EXPERIMENTAL RESULTS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES


1. Introduction
2. VSB receiver with beamformer
3. Simulation Results
4. Conclusion
Appendix
References


1. Introduction
2. Proposed high dynamic range image reconstruction algorithm
3. Experimental result
4. Conclusion
Acknowledgements
References


1. Introduction
2. Proposed De-interlacing Method Based on Motion Compensated Interpolation
3. Experimental Results
4. Conclusions
Acknowledgement
References


¥°. Introduction
¥±. Measurement of the propagation path loss of sea surface free space
¥². Proposal of the propagation path loss prediction model for sea surface free space
¥³. Conclusion
REFERENCES


1. Introduction
2. CCCII
3. Circuit Description
4. Design Example and Simulation Results
5. Conclusions
References





1. Introduction
2. Image Mosaic method
3. Overview of the System
4. Experimental Results
5. Conclusions
References



1. Introduction
2. Position installing of GPS antenna in car
3. Methodology
4. Experimental Result
5. Conclusion
Reference


1. INTRODUCTION
2. PRELIMINARIES
3. QUASI-ACYCLIC PETRI NET
4. CONCLUSION
5. REFERENCES



1. Introduction
2. JPEG2000 Codestream Structure and FEC Based Packet Loss Recovery
3. Proposed Method
4. Simulations
5. Conclusion
References





1. Introduction
2. OTA
3. Loop Structure for Sinusoidal Oscillators
4. Circuit Description
5. Design Example and Simulation Result
6. Conclusions
References


¥°. Introduction
¥±. Measurement of rain rate and beacon signal level
¥². Analysis and Discussion of Measurement Results
¥³. Conclusion
REFERENCES


¥°. INTRODUCTION
¥±. MORE ACCURATE MAD PREDICTION
¥². QUADRATIC R-Q MODEL
¥³. EXPERIMENTAL RESULTS AND CONCLUSIONS
REFERENCES


1. Introduction
2. Illumination Estimation/Normalization
3. Experimental Result
4. Conclusion
References


1. Introduction
2. Model Formulation
3. Results and Discussion
4. Conclusion
References


1. INTRODUCTION
2. DYNAMIC OFFSET-CANCELLATION METHOD
3. PROPOSED DYNAMIC OFFSET-CANCELLATION METHOD and REALIZATION
4. SIMULATION RESULTS
5. CONCLUSIONS
6. ACKNOWLEDGEMENT





1.Introduction
2. Rule Representation Method
3. Algorithm
4. Experiments
5. Conclusion
References



I. INTRODUCTION
II. SYSTEM DESCRIPTION
III. PAPR REDUCTION BY SLM AND LINEAR TRANSMISSION
IV. SELECTIVE DFT SPREAD OFDM SCHEME
V. PERFORMANCE ANALYSIS AND DISCUSSION
VI. CONCLUSION
REFERENCES


1. INTRODUCTION
2. NETWORK ON CHIP ARCHITECTURE
3. VIRTUAL CIRCUIT SWITCHING
5. SIMULATION AND DISCUSSION
6. CONCLUSION
6. REFERENCES



1. Introduction
2. Fundamentals
3. Main result
4. Conclusion





1. INTRODUCTION
2. PRINCIPLE OF OPERATION
3. SIMULATION RESULTS AND DISCUSSIONS
4. APPLICATION EXAMPLES
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Ka band Antenna Subsystem Configuration and Requirements
3. Design and Test of the Feed Equipment
4. Tests of the Feed Assembly
5. Conclusions
References


1. Introduction
2. Up-to-date GPGPU technique - CUDA
3. GPU-based realtime 3-D registraion system
4. Experimental Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Proposed Demosaicing Method
3. Experimental Results
4. Conclusion
ACKNOWLEDGMENT
References


1. Introduction
2. Dual band subreflector
3. Dual band Gregorian reflector antenna
4. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. NEURON MOS INVERTER
3. CIRCUIT CONFIGURATION AND OPERATING CHARACTERISTICS
4. LAYOUT
5. CONCLUSION
Acknowledgment
6. REFERENCES




1. Introduction
2. Proposed Algorithm
3. Experiments and Results
4. Conclusions
References



1. INTRODUCTION
2. CELL LOAD MEASUREMENT
3. PROPOSED LOAD CONTROL SCHEME
4. SIMULATION AND RESULTS
6. CONCLUSIONS
7. REFERENCES


1. Introduction
2. Conventional Joint Estimators for Generic OFDM Systems
3. Effective Joint Estimation of Carrier and Sampling Frequency Offsets for MB-OFDM UWB Systems
4. Simulation Results
5. Conclusion
6. Acknowledgement
7. References



1. Introduction
2. ML Phase Offset Estimation with Frequency Offset
3. Joint Phase and Frequency Offset Estimator
4. Simulation Results
5. Conclusions
References




1. INTRODUCTION
2. PRINCIPLE OF CONVENTIONAL TOPOLOGIES
3. PRINCIPLE OF PROPOSED CIRCUITS
4. SIMULATION RESULTS AND DISCUSSIONS
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Restoration mechanisms in optical mesh networks
3. Proposed restoration control scheme
4. Restoration delay time analysis
5. Simulation and results
6. Conclusion
References


1. Introduction
2. The Proposed Algorithm
3. Experimental Results
4. Conclusion
Acknowledgment
References


1. Introduction
2. Proposed Detection Algotithm
3. Experimental results
4. Conclusion
References


1. Introduction
2. Analogy of basic principle high index contrast MMI devices
3. Design of MMI devices
4. Conclusion
References


1. INTRODUCTION
2. PRINCIPLE OF OPERATION
3. SIMULATION RESULTS AND DISCUSSIONS
4. CONCLUSIONS
5. REFERENCES





1. Introduction
2. Proposed Method
3. Experimental Results
4. Conclusions and Future work
Acknowledgement
References



1. Introduction
2. PAPR of OFDM Signals
3. Proposed ASLM Based on Peak Signal Observation
4. Simulation Results
5. Conclusion
6. Acknowledgement
7. References


1. Introduction
2. Loss-free Handover with GPS Support
3. Novel Handover Scheme based-on HMT
4. Conclusions and Discussions



1. INTRODUCTION
2. PROPOSED SWITCH CONTROLLER FOR DC-DC CONVERTER
3. SIMULATION RESULTS
V. CONCLUSIONS
REFERENCES





1. INTRODUCTION
2. NONIDEALITIES OF OTA-BASED TT BIQUAD
3. LM13700 PARAMETERS MATCHING
4. SA PARAMETERS, CONSTRAINS, AND COST FUNCTION
5. EXPERIMENT AND RESULTS
6. CONCLUSION
7. REFERENCES
8. APPENDIX


1. Introduction
2. Algorithm of the proposed scheme
3. Analysis of the proposed scheme
4. Simulation of the proposed scheme
5. Conclusions
6. Reference


1. Introduction
2. Coding efficiency
3. Perceived Depth and Image Quality
4. Conclusion
Acknowledgment
References


1. Introduction
2. Overview of the proposed algorithm
3. Extraction of a disparity image using a multi-directional Greedy algorithm
4. Iterative extraction and expansion of the reliable area
5. Experimental results
6. Conclusion
Acknowledgment
References


1. Introduction
2. The Error Resilient Entropy Coding
3. The Modified EREC Method
4. Simulation Results
5. Conclusions
References


1. INTRODUCTION
2. CIRCUIT DESCRIPTION
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCES





I. INTRODUCTION
II. PROPOSED ADC OPERATION
III. SIMULATION RESULTS
IV. CONCLUSIONS
V. REFERENCES



1. INTRODUCTION
2. STOCHASTIC REWARD NETS(SRNs)
3. SYSTEM DESCRIPTION
4. HIRERACHICAL MODEL DESCRIPTION
5. NUMERICAL RESULTS
6. CONCLUSION
7. REFERENCES


1. Introduction
2. Optical Link Model of MMoF
3. Performance of OFDM MMoF System
4. Conclusion
References



1. Introduction
2. The Optimal scheduling algorithm for low power
3. Experimental Results
Reference




1. INTRODUCTION
2. AGC Architecture
3. AGC LOOP
4. SIMULATION RESULTS
5. CONSLUSTION
6. REFERENCES


1. Introduction
2. Proposed Field Test-based Path-loss models for terrestrial ATSC DTV
3. Conclusions
References


1. GLORY-DB
2. Related Work
3. Conclusion
References


1. Introduction
2. Region adaptive demosaicing
3. Experimental Results
4. Conclusion
Acknowledgment
References


1. Introduction
2. Conventional Error Concealment
3. The Proposed Error Concealment
4. Experimental Results
5. Conclusions
References


I. INTRODUCTION
II. SCHEMATIC HALF-CIRCUIT OF THE PROPOSED CONFIGURATION
III. THE PROPOSED CONFIGURATION
IV. FINAL CIRCUIT PERFORMANCE
V. CONCLUSIONS
REFERENCES





1. Introduction
2. A Low Branch and Bound technique
3. ILP model's delay scheduling technology which use Branch and Bound
4. Result of an experiment
5. Conclusion
References



1. INTRODUCTION
2. CONFIGURATION
3. EXPERIMENTS AND RESULTS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. PREVIOUS WORK
3. IDCF SCHEME
4. PERFORMANCE RESULTS
5. CONCLUSION
6. REFERENCES



1. INTRODUCTION
2. STATEMENT OF THE PROBLEMS
3. ARCHITECTURE OF THE FRAMEWORK
4. CONCLUSION
5. REFERENCE





1. INTRODUCTION
2. CIRCUIT IMPLEMENTATION
3. MEASUREMENT
4. REFERENCES


1. Introduction
2. Transmission of the Synchronized Streaming Data
3. Experiment and Result
4. Conclusion
References


1. Introduction
2. Proposed Watermarking Method
3. Experimental Results
4. Conclusion
References


1. Introduction
2. ICA Shrinakge Filter
3. Multiscale filter
4. Experiment Results
5. Conclusions
Acknowledgement
References


1. INTRODUCTION
2. DAB SYSTEM SPECIFICATION AND CHANNEL MODEL
3. DAB RECEIVER ARCHITECTURE
4. IMPLEMENTATION AND TEST
5. CONCLUSION
REFRERENCES


1. INTRODUCTION
2. NONIDEALITIES OF OTA-BASED TT BIQUAD
3. LM13700 PARAMETERS MATCHING
4. SA PARAMETERS, CONSTRAINS, AND COST FUNCTION
5. EXPERIMENT AND RESULTS
6. CONCLUSION
7. REFERENCES
8. APPENDIX




1. Introduction
2. Proposed Encryption Processor
3. FPGA Implementation of Encryption Processor
4. Conclusion
References



1. INTRODUCTION
2. MOVING PATTERN IN HIERARCHICAL NEMO
3. DEFINITIONS OF FAILURE CASES IN NEMO
4. ANALYSIS OF FAILURE CASES IN NEMO
5. CONCLUTION
6. REFERENCES


1. INTRODUCTION
2. RECOVERY SCHEMES
3. LCAS AND PROPOSED MODEL
4. CONCLUSION
5. REFERENCES



1. Introduction
2. Unification of gorilla and RAP
3. Principal concept of RAC
4. Concluding Remarks
References





1. INTRODUCTION
2. ARCHITECTURE DESIGN
3. SIMULATION AND COMPARISON
4. SUMMARY
5. REFERENCES


1. Introduction
2. Log History Configuration
3. System Architecture
4. Transformation Proxy Choosing Algorithm
5. Simulations
6. Conclusion
References


1. Introduction
2. Firing Squad Synchronization Problem
3. Optimum-time Synchronization Algorithm for Three-Dimensional Arrays
4. Discussions
References


1. Introduction
2. Preliminary
3. Implementation of a DMAC using SystemC
4. Simulation and Analysis
5. Conclusions
REFERENCES


1. Introduction
2.Background
3. proposed system architecture
4. proposed scheme
5. Experimental Result
6. Conclusion
References


1. INTRODUCTION
2. WEIGHTED ASSICIATION RULE DISCOVERY
3. THE METHODOLOGY OF WAR DISCOVERY FOR DIFFERENT ITEM GROUPS
4. EXPERIMENTS AND ANALYSIS
5. CONCLUSION
6. ACKNOWLEDGEMENT
7. REFERENCES




1. Introduction
2. Multimedia stream transmission based on parallel server
3. Proposed multimedia stream transmission scheme
4. Multimedia stream transmission algorithm
5. Simulations and analyses
6. Conclusion
Acknowledgements
References



1. INTRODUCTION
2. BACKGROUND ON ADAPTIVE RED
3. PROPOSED ALGORITHM
4. SIMULATIONS
5. CONCLUSION
6. REFERENCES


1. INTRODUCTION
2. THE RECEPTION MODEL OF CIRCULAR POLARIZATION DIVERSITY
3. THE MEASUREMENT ENVIRONMENT
4. THE MEASUREMENT RESULTS
5. CONCLUDING REMARKS
6. REFERENCES



1. Introduction
2. Related Works
3. The Proposed Method
4. The Experimental Results
5. Discussions
6. Conclusions and Future Work
References





1. INTRODUCTION
2. A CONSTRUCTION OF THE REAL ESTATE CONTRACT DIGITAL SIGINATURE SYSTEM
3. DESIGN OF DIGITAL SIGNATURE BASED ON XML
4. CONCLUSION
5. REFERENCES


1. Introduction
2. Implementation of Web Proxy Server and Related Modules
3. Simulation
4. Result and Future Work
References


1. Introduction
2. Preliminary
3. Implementation of a Functional Verification System using SystemC
4. Simulation and Result
5. Conclusions
References


1. Introduction
2. Preliminary
3. Implementation of a High-Level Hardware Verification Environment using Teal and Truss
4. Simulation and Validation
5. Conclusions
References


1. Introduction
2. System Structure
3. Implementations
4. Conclusions
References


1. INTRODUCTION
2. GE MULTIPLIER
3. PERFORMANCE EVALUATION
4. CONCLUSION
5. REFERENCES





1. Introduction
2. Energy analysis in GALS network systems
3. Implementation of Dynamic Clock Scaling
4. Simulation results
5. Conclusion
References



1. INTRODUCTION
2. INTERFERENCE ANALYSIS OF MACRO/MICROCELLULAR SYSTEM
3. NUMERICAL RESULTS
4. CONCLUSIONS
5. REFERENCES


1. INTRODUCTION
2. MEASUREMENT SETUP
3. RESULTS & ANALYSIS
4. CONCLUSION
6. REFERENCES



1. INTRODUCTION
2. TURBO CODE
3. IMPLEMENTATION OF TURBO DECODER ON XTENSA
4. ENHANCEMENT BY CUSTOM INSTRUCTIOINS
5. RESULT OF CUSTOMIZATION
6. CONCLUSION
References





1. Introduction
2. Related Works
3. The Proposed Scheme
5. Conclusion
References


1. Introduction
2. USB-DAB Receiver
3. USB & PCI-DMB Receiver
4. Conclusions
References


1. Introduction
2. Reliability Analysis Based on Deterministic Chaos Theory for OSS
3. Numerical Examples
4. Optimal Bug-fix Release Problem
5. Conclusion
Acknowledgments
References


1. INTRODUCTION
2.THEORY
3. RESULTS
4. CONCLUDING REMARKS
References


1. Introduction
2. Structure of the decoder
3. Player interface
4. Implementation of the player and Experimental results
5. Conclusion
References


1. INTRODUCTION
2. REVIEW OF CHANG ET AL.'S AUTHENTICATED ENCRYPTION SCHEME
3. CRYPTANALYSIS OF CHANG ET AL.'S AUTHENTICATED ENCRYPTION SCHEME
4. CONCLUSION
5. REFERENCES



1. Introduction
2. Analog circuit
3. Digital logic modules
4. Conclusion
References


I. INTRODUCTION
II. ANTENNA PRINCIPLES
III. ANTENNA DESIGNS
IV. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES


1. INTRODUCTION
2. ANTENNA DESIGN
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES



1. Introduction
2. RF Transceiver architecture
3. The design on the RF components
4. Conclusion
Reference





1. Introduction
2. The Server System Design
3. The Diameter System for Mobile RFID Network
4. Conclusions
References


1. Introduction
2. Related works
3. Caching Algorithm
4. Simulation
5. Conclusions and Future work
6. References


1. Introduction
2. Agent based simulation model
3. Mathematical model for hot rolling mills
4. Simulation result
5. Application to diagnosis
6. Conclusion
References


1. Introduction
2. Proposed System
3. Results of Proposed Verification System
4. Conclusion
Acknowledgement
References


1. Introduction
2. Concept and Feature of self-directed learning
3. Evaluation method of self-directed learning by using fuzzy theory
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Related Research
3. Suggested Search Algorithm
4. Experiment and performance evaluation
5. Conclusion
6. REFERENCES





1. Introduction
2. AODV
3. Proposed Local Repair Scheme
4. Simulation Results
5. Conclusion
References



1. INTRODUCTION
2. ANTENNA GEOMETRY AND DESIGN
3. RESULTS AND DISCUSSION
4. CONCLUSION
5. ACKNOWLEDGEMENT
6. REFERENCES


1. Introduction
2. Structure of radiation patch
3. Structure and effect of parasitic patch
4. Experimental Results and Discussion
5. Conclusions
6. Acknowledgement
7. References



1. Introduction
2. AODV
3. Proposed Routing Protocol
4. Simulation Results
5. Conclusion
References





1. INTRODUCTION
2. RELATED WORKS
3. "TSCU"(topic-specific crawler with user interests)
4. Conclusion


1. Introduction
2. The Comparison of ATSC and OpenCable system
2. PSIP Tables
3. Re-transmission System
4. Experimental Results
5. Conclusions
Acknowledgment
References


1. Introduction
2. ICT integration in Education
3. Background
4. Research Objective
5. Methodology for developing the ICT training model
6. Conclusion
References


1. Introduction
2. Brief Introduction to Petri nets
3. A Japanese Word Study Model
4. An Evaluation System
5. Conclusion
References


1. Introduction
2. Requirements to Implement SFN
3. Proposed SFN in ATSC System
4. Simulation Results
5. Conclusions
References


1. Introduction
2. definition of e-Learning System
3. System Overview
4. Features of Our System
5. Conclusions
6. REFERENCES





1. Introduction
2. SFBC-OFDM with Transmitter Diversity
3. Channel Estimation Approach
4. Antenna Selection Criteria
5. Simulation Results and Discussion
6. Acknowledgment
References



1. Introduction
2. OAM Configuration
3. Multi-Layered OAM and Alarm Propagation
4. Protection Switching
5. Conclusion
6. References


I. INTRODUCTION
II. GAAS BASED 70 NM METAMORPHIC HEMTS
III. DAML-BASED HYBRID RING COUPLER
IV. SINGLE BALANCED ACTIVE MIXER
V. CONCLUSION
REFERENCES



1. Introduction
2. The VAD Algorithm
3. Speech Enhancement Using Matched Filter
4. Proposed VAD Algorithm
5. Computer Simulations
6. Conclusions
References





1. Introduction
2. Design of VPN Router Hardware Platform
3. Software architecture for IPSee VPN
4. Conclusion
References


1. Introduction
2. Expanded warm-standby sharing
3. Performance Evaluation
4. Conclusion
References


1. Introduction
2. Concept of cooperation support
3. Mobile agent system for cooperation support
4. Conclusion
References


1. Introduction
2. Purpose
3. Research Object
4. Practise
5. Conclusion
6. Future Subject
References


1. Introduction
2. UHCP Packet Format
3. UHCP Service Processes
4. Conclusion
References


1. INTRODUCTION
2. AN OVERVIEW OF IXP2800
3. IMPLEMENTATION OF FORWARDING APPLICATION
4. hARDWARE PLATFORM
5. CONCLUSIONS AND FUTURE WORK
6. REFERENCES




1. Introduction
2. Fault location algorithm
3. Proposed NVP Algorithm
4. Experimental Results
5. Conclusions
Acknowledgment
References
Appendix A. Simulation test condition


1. STATUS OF BROADBAND SERVICES IN JAPAN
2. CONFIGURATION OF OPTICAL ACCESS NETWORK
3. FUTURE DIRECTION OF R&D
4. RECENT DEVELOPMENTS
5. CONCLUSION
6. REFERENCES



1. Introduction
2. The Key Exchange Mechanism using a Symmetric-key
3. The Service Bundle Authentication Mechanism with OSGi
4. Design of a Bundle Authentication System
5. Conclusion
References



1. INTRODUCTION
2. SYSTEM DESCRIPTION
3. TERM EXTRACTION
4. AUTOMATIC RELATED TERM GROUP ACQUISITION
5. QUERY EXPANSION
6. EXPERIMENTS AND EVALUATION
7. CONCLUSION
8. REFERENCES


1. Introduction
2. BWA System
3. Network Management Model
4. Conclusions and Future work
References


1. Introduction: Item Response Theory
2. Mechanism of J-CAT: Testlet version
3. Features of J-CAT
4. Present and Future of J-CAT
5. Remarks
References


1. Purpose
2. Method
3. Implement
4. Results
5. Further Research
References


1. Introduction
2. Related Researches
3. Analytical Models
4. Evaluation of Analytical Models
5. Conclusions
References


1. INTRODUCTION
2. NGN ARCHITECTURE BASED IMS
3. PREMIUM MULTICAST SERVICES
4. PREMIUM NETWORK ARCHITECTURE FOR IP MULTICASTING
5. CONCLUSION
6. REFERENCES




1. Introduction
2. Optical Node Architecture
3. Performance Analysis
4. Conclusion
References




1. Introduction
2. Preliminaries
3. Realization of limit cycles
4. Realization of limit cycles with length 4
5. Conclusion
Acknowledgement
References




1. INTRODUCTION
2. GA-CLUSTERING ALGORITHM
3. THE PROPOSED MUTATION OPERATOR
4. THE EXPERIMENTAL RESULTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Reflection Group
3. UR-KVQ
4. Deciding Method of Initial Arrangement of Codebook
5. Quantization performance
6. Conclusion
References


1. Introduction
2. Objective of this research
3. Research Method
4. Components and characteristics of the Picture Mail Database System
5. Results and Discussions
References


1. Introduction
2. Method
3. Result and Consideration
4. Conclusion
References


2. Requirements for Social System Infrastructure
3. Digital Naming: Linking the Real Objects and Information
4. Privacy in the Digital Naming
5. Conclusion
Acknowledgement
References


1. INTRODUCTION
2. EDOCR MODULATOR and PRE-EQUALIZER
3. SIMULATION and LAB TEST RESULTS
4. CONCLUSION
5. REFERENCES




1. Introduction
2. Related research
3. Color Analysis System Architecture
4. Color Component Analysis
5. Experiment and results
6. Conclusion
Reference s




1. Introduction
2. NCLMS Algorithm
3. Convergence Condition
4. Upper Bound of NCLMS
5. Conclusions
References




1. Introduction
2. Architecture of the Proposed AMOLED Driver Circuit
3. Design of 8bit Full Color Source Driver for AMOLED
4. Conclusion
5. REFERENCES


1. Introduction
2. Partial Product Generator of A Binary Multiplier
4. Conclusions
References


1. Introduction
2. Ontology Mapping Between LOM And CRM
3. Implementation And Assessment
4. Conclusion
References


1. INTRODUCTION
2. LMS ¡®MOMOTARO¡¯
3. ACTUAL ACTIVITY
4. CONCLUSION AND FUTURE PLAN
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Structure of the Simulator
3. Core module
4. Implementation and comparison
5. Conclusion
References


1. INTRODUCTION
2. VOIP PERFORMANCE VARIATIONS
3. MEASUREMENTS
4. RESULT
5. CONCLUSION
6. REFERENCES




1. Introduction
2. Structure of the system
3. Structure of Program
4. System Implementation
5. The Data Transportation Security
6. Test Results
7. Conclusions
8. References



1. Introduction
2. Matching Criteria for Motion Estimation
3. A New Matching Criterion
4. Experimental Results
5. Conclusions
Acknowledgements
References



1. INTRODUCTION
2. DEVICE DESCRIPTION
3. RESULTS AND DISCUSSION
CONCLUSION
REFERENCES


1. Introduction
2. Logic Verification Procedure
3. ALET Language
4. ALET Compiler
5. Comparison
6. Application
7. Conclusion
References


1. Introduction
2. Background
3. Thailand Cyber University (TCU)
4. Present condition of e-learning in Suratthani Rajabhat University
5. Conclusion
References


1. Introduction
2. Distance Learning Support Model
3. Educational Practice in Distance TA
4. Function to intervene in Web bulletin board to let Distance TA activate
5. Conclusion
Acknowledgments
References


1. Introduction
2. Pin open detection method
3. Test input vectors[9]
4. Experimental evalution
5. Conclusions
References


I. INTRODUCTION
II. GAAS BASED 70 NM METAMORPHIC HEMTS
III. DAML-BASED HYBRID RING COUPLER
IV. SINGLE BALANCED ACTIVE MIXER
V. CONCLUSION
REFERENCES




1. Introduction
2. Method
3. Result
4. Conclusion
Reference




1. Introduction
2. A Theoretical Background of DES
3. Realization of DES proposed
4. Design Synthesis and Resulting
5. Conclusion
Reference




1. STATUS OF BROADBAND SERVICES IN JAPAN
2. CONFIGURATION OF OPTICAL ACCESS NETWORK
3. FUTURE DIRECTION OF R&D
4. RECENT DEVELOPMENTS
5. CONCLUSION
6. REFERENCES


1. Introduction
2. Targeted AGC Circuit and Faults
3. Testability Analysis
4. Conclusion
References


1. Introduction
2 . Design of PBL
3. Practice and evaluation of PBL
4. Conclusion
References


1. Introduction
2. Background
3. Summary of the Materials
4. Preparatory Lessons
5. Learning flow of Hiragana Section
6. For further development
References
Acknowledgements


¥°. INTRODUCTION
¥±. TERNARY LOGIC GATES
¥². TERNARY D FLIP-FLOP
¥³. TERNARY D FLIP-FLOP
¥´. CONCLUSION
References




1. Introduction
2. Dark Surrounded Weber-Fechner Fraction
3. Crispening Effect
4. Background-adjusted Weber-Fechner fraction
V. Conclusion
References




1. Introduction
2. Methodology
3. Results
4. Discussions and Conclusions
Acknowledgements
References




1. Introduction
2. Circuit Structure
3. Simulation
4. Discussion
5. Conclusion
References


1. Introduction
2. Tag Antenna Design
3. Simulation and Measurements
4. Conclusions
Acknowledgement
References


2. Antenna Design
3. Results
4. Conclusions
Acknowledgments
References


1. Introduction
2. Conventional method
3. Proposed method
4. Experimental results
5. Conclusions
References




1. Introduction
2. Analysis of Osteoporosis
3. Active Contour Model
4. Method
5. Materials
6. Experiment Result
7. Conclusion
Acknowledgements
References




1. Introduction
2. Simultaneous Subordinate Microthreading
3. Interrupts
4. Flying Interrupt
5. Simulations
6. Conclusions
Acknowledgments
References




1. Introduction
2. Synthesis of Periodic and Aperiodic Binary Sequences by Modulo-2 Addition
3. Numerical Experiment
4. Application to Analog Chaos Circuit
5. Conclusion
References


1. Introduction
2. System Model
3. Channel Estimation
4. Identifiability
5. Simulation Results
6. Conclusion
7. Acknowledgment
References


1. Introduction
2. Problem Formulation
3. Matrix Pencil Approach
4. Modified MP Method for 3-D Estimation
5. Simulation Results
6. Conclusion
References


1. Introduction
2. Maximal-Period Sequences Based on 1-D Maps
3. Orthogonalization
4. Numerical Experiments
5. Conclusion
Acknowledgement
References



1. Introduction
2. Deinterlacing Filters for FCO-sampled Video
3. Proposed PR Deinterlacer Banks
4. Performance Evaluation
5. Conclusion
References


1. Introduction
2. Viterbi Decoding
3. The Architecture of High-Speed Viterbi Decoder
4. Reconfigurable Architecture of Viterbi Decoder
5. Summary
Acknowledgment
References





1. Introduction
2. Composition of robot hand
3. Discussion of Motion Characteristics
4. Generation of Sign Language Movement
5. Conclusion
References


1. Introduction
2. Data and Analysis Methodlogy
3. Results and Discussions
4. Conclusions
5. Acknowledgment
References


1. Introduction
2. Microstrip line employing metamaterial structure
3. Miniaturized and low impedance onchip transformer and Wilkinson power divider employing metamaterial structure on MMIC
4. Conclusion
ACKNOWLEDGMENT
References


1. Introduction
2. Measuring Vacuum Pressure
3. Calibration
4. Hardware Implementation
5. Conclusion
References





1. Introduction
2. Algorithm Design
3. Proposed Descriptors
4. Principle of the Proposed (De)Multiplexer
5. Simulation Results
6. Conclusion
References


1. Introduction
2. Ichimoku Kinkou Hyou
3. Selection of Single Trading Signal
4. Selection of Compound Trading Signal
5. Conclusions
References




1. Introduction
2. ¥Ä¥Ò Modulator Structure
3. Implementation
4. Conclusions
References


1. Introduction
2. Design of active balun employing active device
3. Measurement of active balun employing InGaP/GaAs HBT
4. Conclusion
Acknowledgment
References


1. Introduction
2. A highly miniaturized Wilkinson power divider and branch-line coupler employing ¥ð-type MCMLS
3. Conclusion
Acknowledgment
References


1. Introduction
2. Circuit Configuration
3. Simulation Results
4. Conclusion
References




1. Introduction
2. Requirement for Patient Monitoring System
3. Structure of the system
4. System Implementation
5. Test Results
6. Conclusions
7. References


1. Introduction
2. Parallel Mechanism
3. Neural Network
4. Conclusion
References




1. Introduction
2. Floating Nullor
3. Equivalent circuit transformations
4. Wien-bridge oscillator family
5. Phase-shift oscillator family
6. Twin-T oscillator family
7. Experiments
8. Conclusion
References


1. Introduction
2. Theory of Signal Integrity
3. Results and Discussion
4. Conclusions
Acknowledgement
References


1. Introduction
2. Background
3. Proposed Method
4. Simulation
5. Conclusion
References


1. Introduction
2. Operation and Characteristics of Conventional Circuits
3. Operation and Characteristics of Proposed Circuit
4. Simulation Results
5. Conclusions
References



1. Introduction
2. ITIQ module operation
3. Proposed architecture
4. Experimental Results
5. Conclusion
References


1. Introduction
2. Related work
3. Motivation
4. Proposed data prediction scheme
5. Performance evaluations
6. Summary and conclusion
Acknowledgments
References



1. Introduction
2. Circuit Description
3. Performance Analysis
4. Simulation Results
5. Further Applications
6. Conclusions
References


1. Introduction
2. Convex Combination of R-APA filters
3. Experimental Results
4. Conclusion
5. Acknowledgement
References


1. Introduction
2. Conventional Low-Complexity L¡Ä-Norm Adaptive Filtering Algorithms
3. Proposed Partial-Update NSLMS Algorithm with Sparse Updates
4. Convergence Analysis
5. Experimental Results
6. Conclusion
7. Acknowledgement
References


1. Introduction
2. Related Works
3. Integration techniques for XML instances
4. Storage Model
5. Conclusion
References



1. Introduction
2. Data Value Prediction Models
3. Data Value Predictor using Stride and Shift
4. Simulation and Performance Evaluation
5. Conclusions
Acknowledgements
References



II. Pre-FFT beamformer for an OFDM system
III. Simulation and Numerical Results
IV. Conclusions
REFERENCES



1 Introduction
2 Preliminaries
3 Semantic XML-to-XML Mapping
4 Implementation
5 Conclusion
References


1. INTRODUCTION
2. NEW NARROWBAND ANC SYSTEMS
3. SIMULATIONS
4. CONCLUSIONS
5. REFERENCES


1. Introduction
2. Problem Formulation
3. The Proposed Algorithm
4. Numerical Example
5. Conclusion
References


1. Introduction
2. Secret Sharing Storage System
3. WebDAV frontend
4. Implementation of the WebDAV Frontend
5. Conclusion
Acknowledgement
References



1. Introduction
2. Problems with the typical image retrieval methods
3. Adaptive Component Analysis System
4. Result of Measurement
5. Conclusions and future works
References


1. Introduction
2. MPEG-2 data structure and GOP
3. Scene change detection method by existent algorithm
4. SCD by proposed algorithm
5. Results of Experiment
6. Conclusion
7. Reference



1. Introduction
2. QJAVA System Description
3. Evaluations Results and Discussions
4. Conclusions and Future Work
References


1. Introduction
2. Experimental setup
3. Results and discussion
4. Conclusions
Acknowledgements
References


1. Introduction
2. Method
3. Results
4. Conclusion
Acknowledgment
References


1. Introduction
2. Approach
3. Experiment and Analysis
4. Conclusion and remark
References


1. Introduction
2. Operation of the Target MTCMOS Circuit
3. Proposed MTCMOS F/Fs
4. Experimental Results
5. Conclusion
Acknowledgments
References


1. Introduction
2. Related Works
3. Metadata Model
4. MSDL
5. Comparison
6. Conclusion and Future Works
References


1. Introduction
2. Multihoming Mechanism in IPv6
3. BGP4+ Algorithm
4. The extended BGP4+ Algorithm
5. Conclusion
References


1. Introduction
2. Magnetic Recording System
3. Evaluation Tool
4. Results
5. Conclusions
Acknowledgement
Reference


1. Introduction
2. System Model
3. Design of an MMSE IIR Equalizer
4. Simulation Results
5. Conclusion
6. Acknowledgment
References


1. Introduction
2. Motion Vector Reestimation
3. Proposed Algorithm
4. Experimental Results and Conclusion
References


1. Introduction
2. Voice Recognition
3. Proposed Method
4. Experimental Results
5. Conclusion
References


1. Introduction
2. HPA Nonlinearity
3. Predistorter
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Proposed Scheme
3. Experimental Results
4. Conclusions
Acknowledgements
References


1. Introduction
2. Read-back System Model
3. Simulation Results and Discussions
4. Conclusions
5. References


1. Introduction
2. HDD Arm Measuring System, Fuzzy Logic and Process Capability Index (Cpk)
3. Experimental Results
4. Discussion
5. Conclusion
6. Acknowledgement
References


1. Introduction
2. Deinterlacing with Selective Motion Compensation
3. Experimental results
4. Conclusion
References


1. Introduction
2. M-Channel PR filter banks
3. DWT FH System
4. Dynamic Frequency Hopping
5. Simulation and Results
6. Conclusion
Reference


1. Introduction
2. The Video Watermarking Procedure
3. Experimental Results
4. Conclusions
References


1. Introduction
2. System Overview
3. Video Segment Handling
4. Scheduling Algorithm
5. Experimental Results
References


1. Introduction
2. Conventional PLC Algorithm
3. Proposed Algorithm
4. Performance Evaluation
5. Conclusion
Acknowledgement
Reference


1. Introduction
2. Minimum Mean Absolute Error Predictor
3. Error Distribution
4. Simulation
5. Conclusion
References


1. Introduction
2. Review of invertible deinterlacing with variable coefficients
3. Coefficient-Parameter Reduction
4. Performance Evalution
5. Conclusion
Acknowledgment
References


1. Introduction
2. Fast leaky adaptive filter
3. Experimental Results
4. Conclusions
References


1. Introduction
2. System Model
3. Theoretical Analysis
4. Throughput Evaluation
5. Conclusion
Acknowledgment
References


1. Introduction
2. Proposed Method
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Description of the Proposed System
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Proposed algorithm
3. Experimental result
4. Concusion
References


1. Introduction
2. Eureka-147 System
3. Korean DMB
4. Conclusion
Acknowledgement
References


1. Introduction
2. Simulation Results
3. Conclusion
References


1. Introduction
2. Projection onto convex sets
3. The proposed 3D mesh watermarking
4. Experimental results
5. Conclusions
Acknowledgements
References


1. Introduction
2. DRM System
3. DRM parameters
4. Channels
5. Simulation
6. Conclusions
References


1. Introduction
2. Proposed method
3. Design example
4. Conclusions
References


1. Introduction
2. Related Work
3. Traffic Measurement
4. Email Workload
5. Email Traffic Characterization
6. Discussion
7. Conclusion
References


1. Introduction
2. DMB Data Multiplexing Structure
3. Efficient data multiplexing architecture
4. Modeling and Simulation
3. Performance Analysis
4. Conclusion
Acknowledgement
References


1. Introduction
2. Neville filter
3. Lifting using Neville filter
4. Quincunx Interpolating Filter Bank Family
5. Ridgelet Transform
6. Simulation and Result
7. Conclusion
References


1. Introduction
2. Penumbral Imaging
3. Edge-emphasizing algorithm based DCT-domain shrinkage
4. Experimental Results
References


1. Introduction
2. Trellis Encoder of Enhanced VSB
3. Analysis on Performance of Enhanced VSB
4. Simulation Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. SIDS monitoring system
3. Motion detection using the LVQ
4. Experimental results
5. Conclusions
References


1. Introduction
2. ML and the MMSE channel estimators
3. Proposed scheme
4. Simulation results
5. Conclusion
References


1. Introduction
2. Eureka-147 DAB System
3. The Delivery Framework
4. Evaluations
5. Conclusion
Acknowledgment
References


1. Introduction
2. Experiment Methodologies
3. Results and Discussions
4. Conclusions
References


1. Introduction
2. The Proposed Quantization Noise Reduction Algorithm
3. Experimental Results
3. Conclusions
References


1. Introduction
2 Background
3. Evolution methods and Experimental Setting
5. Experimental Results and Discussions
6. Conclusion
7. Acknowledgement
8. References


1. Introduction
2. Preliminary
3. Criterion and Verification Algorithm of Marking-Dependent Terminacy
4. Computation Complexity of Marking-Dependent Terminacy
5. Example
6. Conclusion
References
Appendix


1. Introduction
2. Definitions of Petri Nets
3. On Generation of Key-Generator
4. Enumeration of Elementary T-invariants
5. Conclusion
References


1. Introduction
2. Electronic Ballast Structure
3. The Electronic Ballast Design
4 . Experiment results and Examination
5. Conclusion
References


1. Introduction
2. The Proposed Watermark Detection Algorithm
3. Result of Computer Simulation
4. Conclusions
Acknowledgement
References


1. Introduction
2. Principle of the proposed system
3. Data Transmission Rate Performance
4. Conclusion
Acknowledgment
References


1. Introduction
2. Ballast Circuit Topology
3. Automotive HID lamp operation.
4. Analysis of the ballast
5. Experimental Results.
6. Conclusion
References


1. Introduction
2. Amplifier with sub class E operation
3. Output power when class E amplifier do sub class E operation
4. A calculation example
5. A conclusion
References


¥°. INTRODUCTION
¥±. CONTROLLER DESIGN
¥². SIMULATION RESULTS
¥³. CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES


¥°. Introduction
¥±. ARCHITECTURE
¥². ARCHITECTURE
¥³. PROPOSED MULTI LEVEL VIC &DECISION CIRCUIT
¥´. SIMULATION RESULTS.
¥µ. CONCLUSION
REFERENCES


1. Introduction
2. System Structure
3. Jitter Performance
4. Conclusions
Acknowledgment
References


1. Introduction
2. Proposed Algorithm
3. Experimental result
4. Conclusions
References


¥°. INTRODUCTION
¥±. PROPOSED ADC ARCHITECTURE
¥². PROPOSED CIRCUIT DESCRIPTIONS
¥³. PERFORMANCE EVALUATION
¥´. CONCLUSION
REFERENCES


1. Introduction
2. Charge Pump Counter Based ADI
3. Simulation Result
4. Conclusion
References


1. Introduction
2. Power consumption on §ÑiMAX Block
3. Design of LNA and Envelope Detector
4. Measurement and Estimation of power consumption in a circuit
5. Conclusions
References


1. Introduction
2. New gain control method with frequency divier
3. Proposed ramp generator
4. Simulation and Layout
5. Conclusion
Reference


1. Introduction
2. Related Studies
3. Enhanced RBF Network
4. Experiment and Performance Evaluation
5. Conclusions
References


1. Introduction
2. The proposed mesh watermarking
3. Experimental results
4. Conclusions
References
Acknowledgements


1. Introduction
2. Pseudo Exponential Circuit
3. Application to VGA
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Circuit Description
3. Simulation Results
4. Conclusion
Acknowledgements
References


1. Introduction
2. Circuit Configuration and Operation
3. Measured Radiation Noise
4. Analysis of the Radiation Noise
5. Efficiency
6. Conclusion
References


1. Introduction
2. Conventional Damping Circuit
3. Proposed Damping Circuits
4. Application to Wireless Communication System
5. Simulation Results
6. Conclusions
References


1. Introduction
2. SMT-PQP Fundamentals
3. Design
4. Evaluation
5. Conclusions
References


1. Introduction
2. Smart Card Terminal System Design
3. Smart Card Terminal System Development
4. Smart Card Terminal System Verification
5. Concluding Remarks
Acknowledgments
References


1. Introduction
2. MOSFET Pair Operating in the Linear Region
3. Principle of Proposed Method
4. Circuit Structure
5. Simulation Results
6. Conclusions
References


1. Introduction
2. Conventional Circuit
3. Modified Voltage Reference Circuitry
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Conventional P-TFT Emission Driver
3. New P-TFT Emission Driver
4. Simulated and Measured Results
5. Conclusions
References


1. Introduction
2. Pseudo Exponential Function
3. Proposed Pseudo Exponential Function Generating Circuit
4. Simulation
5. Conclusion
References


1. Introduction
2. Very Efficient Adiabatic Logic(VEAL) architecture
3. Simulation result and power comparison
4. Conclusion
5. Acknowledgement
References


1. Introduction
2. Conditional Access Module System Design
3. Conditional Access Module System Development
4. Conditional Access Module System Verification
5. Concluding Remarks
Acknowledgments
References


1. Introduction
2. A Class-B Squaring Circuit
3. VTeq¡¯Level Shift Circuit
4. Conclusions
References


1. Introduction
2. Cascade Observer
3. Application to the Robot Angular Link Velocity
4. Simulation
5. Conclusion
Acknowledgment
References


1. Introduction
2. CCCF and CCCFB
3. Circuit configuration and analysis
4. Design Example and Simulation Results
5. Conclusions
References


1. Introduction
2. Proposed level shift circuits
3. Simulation Results
4. Summary
REFERENCES


1. Introduction
2. Characteristics of Bent Waveguides
3. Conclusions
Acknowledgments
References


1. Introduction
2. Cellular CDMA Distributed and Constrained Power Control System Models
3. Proposed Power Control Algorithms Using Evolutionary Computation
4. Computer Simulation Results
5. Conclusions and Further Studies
Acknowledgments
References


1. Introduction
2. Simple Circular Neural Network
3. Limit Cycles
4. Implementation
5. Conclusion
References


1. Introduction
2. MOS Transconductor using Bias-Offset Technique
3. Proposed Circuit
4. Simulation
5. Conclusion
References


¥°. INTRODUCTION
¥±. BOOST CONVERTER CIRCUIT
¥². SIMULATION RESULTS
¥³. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. Lorenz-like Chaos
3. Rational function approximation and neural network
4. Application to the chaotic time series.
5 Conclusion
References


1. Introduction
2. Architecture of Multiplier
3. Conclusion
4. Acknowledgement
References


1. Introduction
2. Related Work
3. Mobile database management system based on mobile agent
4. Simulation
5. Conclusion
References


1. Introduction
2. Hybrid Recurrent Neural Networks
3. Simulation Results
4. Conclusion
References


1. Structure of the proposed converter
2. Result
3. Conclusion
References


1. Introduction
2. Circuit Principle and Operation
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Color Space Classification by Using Additive Competitive Learning
3. Experimental result
4. Conclusion
Acknowledgement
References


1. Introduction
2. System Description
3. Analysis of Initial Power WOD
4. Conclusions
Acknowledgements
References


1. Introduction
2. Moving Vector Parameter
3. Signature Verification
4. Simulation Results
5. Conclusion
References


1. Introduction
2. q-normal distribution
3. q-Gabor wavelet
4. Kernel-based Topographic Map Formation
5. Experiment
6. Results
7. References


1. INTRODUCTION
2. EXTENDED SMALL DIAMOND SEARCH
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Conventional Audio Watermarking Method Based on Amplitude Modification
3. Proposed Method of Increasing Watermark Information Capacity
4. Experimental Result
5. Conclusion
References


1. Introduction
2. Pulse-Coupled Neural Network
3. Foveation point selection
4. Face detection
5. conclution
References


1. Introduction
2. Preliminaries
3. Parallel and Distributed Genetic Local Search on different capability nodes
4. Experimental Evaluation
5. Conclusion and Future work
Reference


1. Introduction
2. A dynamic allocation and binding algorithm
3. The result of experiments
4. Conclusion
Reference


1. Introduction
2. Self-Organizing Method Using with Kernel-Based Topographic Map Formation
3. q-Gaussian Kernel Function
4. Self-Organizing Method Using with Kernel-Based Topographic Map Formation with q-Gaussian Kernel Function
5. Experimental Results
6. Conclusion
References


1. Introduction
2. Smearing Transformation and Desmearing Transformation
3. Conventional Audio Watermarking Method Using Smearing Transformation
4. Improvement of Sound Quality by Embedding Position Grouping
5. Experiment
6. Conclusion
References


1. Introduction
2. Problem Formulation
3. Finite-Wordlength Design
4. Numerical Example
5. Conclusion
References


1. Introduction
2. q-normal distribution
3. Proposal method
4. Experiment
5. Result
6. Conclusion
References


1. Introduction
2. OCT system configuration
3. Result
References


1. Introduction
2. Extraction and isolation of areas containing objects
3. Isophotes and object isolation
4. Experiment and investigation
5. Conclusions and future works
References


1. Introduction
2. Theory and process
3. Experiment and result
4. Conclusion
Acknowledgements
References


1. Introduction
2. Design of Digital Stereo Amplifier
3. Design of PCM for Li-Polymer Battery
4. Implementation and Test for designed system
5. Conclusion
References


1. INTRODUCTION
2. MATHEMATICAL MODEL
3. NUMERICAL SIMULATION
4. CONCLUSION
References


1. Introduction
2. The Biofeedback System
3. System Design
4. System Experiment
5. Conclusion
Acknowledgements
References


1. Introduction
2. Design and implementation of webbased courseware
3. Application and result
4. Conclusion
Reference


1. Introduction
2. Construction and Maintenance of SOT (Sink Oriented Tree)
3. Adaptive Data Aggregation
4. Evaluation of ADAP
5. Conclusion
References


1. Introduction
2. System specification
3. Experiments and results
4. Conclusions
Acknowledgement
References


1. Introduction
2. Proposed Architecture
3. Circuit Design and Simulation
4. Conclusion
Acknowledgment
References


1. Introduction
2. Linearity-Optimized Doherty Amplifier
3. Implementation and Experimental Results
4. Conclusions
Acknowledgement
References


1. Introduction
2. Electro-acoustic Model of a DET
3. Analysis and Discussion
4. Conclusion
Acknowledgement
References


1. Introduction
2. Systolic messy arrays
3. Piling structure
4. Conclusions
References


1. Introduction
2. Attacks of StirMark and the Problem
3. Attack Classification
4. Subjective Effect Test for Natural Videos
5. Conclusion
Acknowledgment
References


1. Introduction
2. An electric property of the heart
3. Design of the multidipole current source
4. An experimental results
5. Conclusion
References


1. Introduction
2. G-B biasing technique Principle
3. Experimental method
4. Experimental Results
5. Conclusions
References


2. Standards analysis
3. System design
4. Experimental results
5. Conclusion
References


1. Introduction
2. System Implementation
3. Implementation and Experiment
4. Conclusion
References


1. Introduction
2. Java Card Technology
3. The T=1 Protocol Technology
4. Design and Implementation of the T=1 Protocol
5. Test Results
6. Conclusion
References


1. Introduction
2. Crawling Models and Related Work
3. Proposed Model
4. Cost Model
5. Conclusion
References


1. Introduction
2. Advanced Multi-sine Method
3. Design of the System
4. Graphical Algorithm for Finding Initial Values
5. Results and Discussion
6. Conclusions
References


1. Introduction
2. VT Shift by FN Stress
3. Comparator Offsets
4. Offset Manipulation Method
5. Test Results
6. ROM Applications
7. Conclusions
References


1. Introduction
2. Topology of the proposed Multimode LNA
3. Simulation results of the designed LNA
4. Conclusion
Acknowledgement
References


Results and discussion
Conclusion
References


1. Introduction
2. System design
3. Conclusion
References


1. Introduction
2. System description and related work
3. The proposed bandwidth allocation scheme
4. Simulations and analyses
5. Conclusions
Acknowledgement
References


¥°. INTRODUCTION
¥±. MATERIALS AND METHODS
¥². RESULTS & DISCUSSION
¥³. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Hybrid SA-GA Method
3. Experimental Results
4. Conclusions
References


1. Introduction
2. MIPI SLIM Bus & Clock Gear
3. Design and Verification
4. Conclusions
Acknowledgment
References


1. Introduction
2. Development of System
3. Conclusion and Discussion
Reference


1. Introduction
2. Strategy for Channel Assignment and Assumptions
3. Teletraffic Analysis of Cellular System Using Terminal-to-Terminal Communication
4. Numerical Results and Discussions
5. Conclusions
References


Introduction
1. System Model
2. Simulation and Experimental Results
3. Conclusions
References


1. Introduction
2. Data Collection System
3. Reconstruction Algorithm
4. Experiments in a phantom
5. Experiments in human
6. Conclusion an discussion
References


1. Introduction
2. The proposed an efficient hardware allocation algorithm
3. The result of experiments
4. Conclusion
Reference


1. Introduction
2. Platform Configuration
3. The Regularized FPGA Development Platform Verification Flow
4. Conclusions
References


1. Introduction
2. Preliminaries
3. Implementation of a Single-Dual-Single Wrapper
4. Experimental Results
5. Conclusions and Future Work
Acknowledgements
References


1. Introduction
2. Multimedia Signal Processing System Using the Power Minimization Technique
3. Performance Analysis of a Low Power Multimedia System
4. Simulations and Results
5. Conclusions
References


1. Introduction
2. UWB Signals in Indoor Wireless Multipath Channels
3. Single-Dwell Serial Search Schemes
4. Proposed Search Scheme
5. Simulation Results
6. Conclusions
References


1. Introduction
2. Extraction Technique
3. Simulation and results
4. Conclusions
Acknowledgement
References


1. Introduction
2. Bus and On-Chip-Network Architecture
3. Simulation and Verification
4. Conclusion
References


1. Introduction
2. Algorithm and Previous works
3. Proposed CAVLC decoder architecture
4. Verification and Performance Comparison
5. Conclusion
References


1. Introduction
2. Clock Tree Synthesis
3. Experimental results
4. Conclusions
References


1. Introduction
2. Wedgelet Decomposition
3. Continuity of Object Contours in Wedgelet Approximation
4. Simulation Result
5. Conclusion
References


1. Introduction
2. Container Identifier Extraction
3. Identifier Recognition using ART2-based Hybrid Network
4. Experiments and Performance Evaluation
5. Conclusions
References


1. Introduction
2. Related works
3. Architecture Platform
4. Hardware/Software Codesign Flow
5. Case Design
6. Conclusions
REFERENCES


1. Introduction
2. Asynchronous Design
3. Architecture of Asynchronous MSP430 Core
4. Design and Simulation Result
Conclusion
References


1. Introduction
2. Fuzzy reasoning model
3. The proposed models
4. Circuit design
5. Conclusions
References


1. Introduction
2. SystemC
3. Our Proposed Architecture
4. SoC Design Flow using our proposed Architecture
5. Case Study?JPEG Codec System Design
6. Experimental Results
7. Conclusion
Acknowledgement
References


1. Introduction
2. The process of proposed algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. IEEE 802.11
3. Proposed Scanning Method
4. Experimental Results and Conclusion
References


1. Introduction
2. An Informatic-Cube World
3. Homogeneous Worlds
4. A Mathematical Tool
5. Results
6. Open Informatic-Cube Worlds
7. Conclusions
References


1. Introduction
2. Event Graph
3. Generating Sub-Event-Graph
4. Case study
5. Conclusion
Acknowledgments
References


1. Introduction
2. Design Concepts
3. Simulation Results
4. Implementation and Evaluation
5. Concluding Remarks
References


1. Introduction
2. Methods
3. Experiment
4. Results and Discussion
References


1. Introduction
2. Face(Object) Detection
3. PTZ - Control
4. Experimental Results
5. Conclusion
References


1. Introduction
2. The Scan Structure and Compression of Test Vector
3. The Proposed Reordering Algorithm and Compression
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Inertial Navigation System : INS
3. Experiment and Result
4. Conclusion
References


1. Introduction
2. Stochastic Proximity Embedding
3. Optimization of Similarity
4. Performance comparison of the original SPE with the extended SPE
5. Conclusions
References


1. Introduction
2. Method
3. Results & Discussion
4. Conclusion
References


1. Introduction
2. New CMFB
3. New Feedback Amplifier
4. Simulation and Experimental Results
6. Conclusion
References


1. Introduction
2. Related Works
3. The verification method for PKC and AC using OCSP
4. Conclusion
References


1. Introduction
2. System Implementation
3. Experimental Result
4. Conclusion
References


1. Introduction
2. Architecture
3. Simulation
4. IC Implementation
5. Conclusion
6. Acknowledgment
References


1. Introduction
2. Railway Software Safety Criteria
3. Railway Software Development Methodology
4. Conclusions
References


1. Introduction
2. Circuit Description and Operation
3. Simulation results
4. Conclusions
Acknowledgments
References


1. Introduction
2. System Configuration
3. Experiments
4. Experimental Results and Discussion
5. Conclusion
Acknowledgment
References


1. Introduction
2. Object-based Stereoscopic image synthesis technique based on a depth camera
3. Object-based multi-viewpoint system
4. Experimental Results
5. Summary
Acknowledgement
References


I. INTRODUCTION
II. A REVIEW OF BASIC MICROMIXER
III. THE NEW RF MICROMIXER ARCHITECTURE
IV. SIMULATION PERFORMANCE
V. CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES


1. Introduction
2. System configuration
3. Experiments
4. Simulation and experimental results
5. Concluision
Acknowledgment
References


1. Introduction
2. Sensor Circuit Board for measuring PPG
3. Design of CMOS Interface Circuit for measuring PPG
4. Simulation Results and Analysis of CMOS Interface Circuit for measuring PPG
5. Conclusion
Acknowledgments
References


1. Introduction
2. The structure of the lens
3. Fabrication and measurement
4. Conclusion
Acknowledgments
References


1. Introduction
2. System geometry and motion error model
3. Proposed motion error correction algorithm
4. Implementation and performance analysis
5. Conclusion
References


1. Introduction
2. Interpolator-based Timing recovery algorithm
3. Simulation Results
4. Conclusion
References


1. Pulsed Doppler Radar
2. System Design and Description
3. Benefits and Efficiency of Our System as Compared to the Previous Systems
4. Conclusion
References


1. Introduction
2. Experiment
3. Corresponding Degree
4. Results
5. Conclusion
Acknowledgments
References


1. Introduction
2. Design
3. Fabrication
4. Results and Discussion
5. Conclusions
Acknowledgement
References


1. Introduction
2. Accuracy Improvement
3. Limitation Analysis
4. Methodology and Result
5. Conclusion
Acknowledgement
References


1. Backgrounds and Purpose
2. Experiment
3. Analysis
4. Result
5. Discussion
6. Conclusion
References


1. Introduction
2. Design of the CPLD controller
3. Experiments and results
4. Conclusion
Acknowledgements
References


1. Introduction
2. Monitoring Algorithm
3. Case study: An application in a satellite network
4. Result
5. Discussion and Future Work
References


1. Introduction
2. Binary phase Exclusive-OR operation
3. Gray image encryption process
4. Decryption process using joint transform correlator(JTC)
5. Computer simulations
6. Conclusions
References


1. Introduction
2. Power Controlled Home-Gateway System
3. Proposed Power Management Method
4. Power Management Method Overall Flow
5. Performance of Power Control Method
6. Conclusion
ACKNOWLEDGEMENT
References


1. Introduction
2. ASIP Design Flow
3. Experiment and Result
4. Conclusion
7. Acknowledgments
References


1. Introduction
2. Feature Extraction
3. Signature Verification
4. Simulation Results
5. Summary
References


1. Introduction
2. Fundamental Elements
3. Propagation of Pulses in a Closed-Loop Neural Network
4. Conclusion
Acknowledgements
References


1. Introduction
2. The Proposed Methods
3. Experimental Results
4. Conclusion
References


1. Introduction
2. 3-dimensional transform
3. Simulation
4. Conclusions
References


1. Introduction
2. Previous works
3. Detection of accidental errors
4. Correction
5. Evaluation
6. Conclusion
References


1. Introduction
2. Grover¡¯s and Ventura¡¯s quantum algorithms for data searching
3. Some results for data searching algorithms
4. Conclusion
References


1. Introduction
2. Synchronous Collaborative Systems
3. Reliable Multicast
4. SPREAD
5. MnRTool
6. Discussion and Conclusion
References


1. Introduction
2. System Overview
3. Symbol Synchronization Schemes
4. Simulation Result
5. Conclusion
References


1. Introduction
2. Previous Works
3. The proposed method
4. Simulation results
5. Conclusions
References


1. Introduction
2. Mobile Internet
3. System design
4. Results
References


1. INTRODUCTION
2. RELATED STUDIES AND ISSUES
3. DESIGN OF STACK SAFE-NANO OS KERNEL BASED ON SYSTEM STATE-MONITOR FOR USN
4. PERFORMANCE EVALUATION
5. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. SUMMARY OF PREVIOUS WORKS
3. ZONE-BASED ALIGNED PARTITION
4. EXPERIMENT
5. REFERENCES


1. Introduction
2. Related Works
3. Design and Implementation Issues
4. Testbed and Test Results
5. Conclusions
References


1. Introduction
2. A New Spread Spectrum Communication System
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Digital Image Stabilization
3. Experimental Result
4. Conclusions
References


1. Introduction
2. Organization of System
3. Implementation of System
4. Conclusion
References


1. Introduction
2. Proposed Algorithm
3. Simulation Result
4. Conclusion
Acknowledge
References


1. Introduction
2. Domain Name Autoconfiguration
3. Examples
4. Conclusion
Acknowledgment
References


1. Introduction
2. Algorithm WDD
3. Waiting Time Function
4. Experiments
5. Conclusions
References


1. Introduction
2. The Error Resilient Entropy Coding
3. The Proposed EREREC Method
4. Simulation Results
5. Conclusions
References


1. Introduction
2. Configuration and Service model
3. Experimental results
4. Conclusion
References


1. Introduction
2. Outline of this research
3. The Automation IT Farm
4. Supervisory Remote Control System
5. Conclusion
6. Future Works
Acknowledgement
References


1. Introduction
2. Related works and motivations
3. The proposed test framework
4. Case study
5. Conclusion
6. Acknowledgment
References


1. Introduction
2. Related Work
3. Proposed Post-Processing Based Approach
4. Results
5. Conclusion
References


1. Introduction
2. Analysis of camera-based image
3. Character segmentation
4. Experiments
5. Conclusion
References


1. Introduction
2. Basic Concept
3. System design
4. Experimental Results
5. Discussion
6. Conclusion
References


1. Introduction
2. Code Generation based on the Tree Structure
3. New OVSF Code Index Method
4. Logic Desgin Of OVSF Code Generation
5. Conclusions
References


1. Introduction
2. The process of proposed algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Proposed algorithm
3. Simulation results
4. Conclusions
References


1. Introduction
2. Cancelable Biometrics for PCA coefficient Based Face Data
3. Experiments
4. Conclusion
Acknowledgments
References


1. Introduction
2. An Attention Model for Saliency Map
3. Pyramind & Clustering Algorithm
4. Conclusion
References


1. Introduction
2. Antenna Analysis
3. Results
4. Conclusion
Acknowledgement
References


1. Introduction
2. Theory
3. Experiment
4. Conclusion
References


1. Introduction
2. Proposed Tracking Algorithm
3. Experimental Result and Analysis
4. Conclusions
Acknowledgement
References


1. Introduction
2. Motion Detection and Tracing
3. Fainting Motion Detection
4. Experimental Result
5. Conclusion
Acknowledgment
References


1. Introduction
2. Directional Adaptive WSSG filter
4. Conclusion
5. Future work
References


1. Introduction
2. Related Work
3. Estimating Motion Parameters
4. Experimental Results
5. Conclusion
References


1. Introduction
2. System Description
3. Proposed Channel Estimation
4. Simulations
5. Conclusion
References


1. Introduction
2. TD and PSP
3. Proposed Algorithm
4. Simulation
5. Conclusion
References


1. Introduction
2. CNTGST for Multi-Object Detection in Color Images
3. Experimental Results and Discussion
4. Conclusion
References


1. Introduction
2. System Overview
3. Crack Detection and Tracing
4. Post-processing of the results
5. Experiments
6. Conclusions
Acknowledgement
References


1. Introduction
2. Premolar Segmentation
3. Experiment
4. Results
5. Conclusion
6. Acknowledgement
References


1. Introduction
2. AIMD algorithm
3. TCP-Friendly Rate Control
4. Proposed Method
5. Simulation and Results
6. Conclusions
References


1. Introduction
2. Distributed Arithmetic Realization for 2-D Digital Filter
3. Hardware Architecture
4. Synthesis And Experimental Results
5. Conclusions
References


1. Introduction
2. The Viterbi Decoder Implementation
3. The Proposed Structure Implementation for Low Power Viterbi Decoder
4. Conclusion
References


1. Introduction
2. QoS Method for Web service
3. Traffic management
4. Simulation Results
References


1. Introduction
2. Temporal error concealment algorithm using multi-side boundary block matching
3. Proposed method
4. Experiment & result
5. Conclusion
Acknowledgements
References


1. Introduction
2. Proposed enhancement method
3. Simulation results
4. Conclusions
5. Acknowledgements
References


1. Introduction
2. MAC State Transition of cdma2000[1][2]
3. A Greedy-based Rescheduling
4. Case Study : Simulations
5. Concluding Remarks
6. Acknowledgement
References


1. Introduction
2. State-Space Digital Filter Structure
3. DA for State-Space Digital Filter Realization
4. Simulation and Synthesis Results
5. Conclusions
References


1. Introduction
2. Conventional Enhancement Methods
3. Proposed Enhancement Method
4. Hardware Implementation of Panoramic IRWS
5. Experimental Result
6. Conclusion
References


1. Introduction
2. Active and Passive Network Throughput Measurement Methods
3. Utilization of a Passive Measurement Method
4. Problem of TCP Timestamps Option Measurement
5. A solution to the Problem and a System Application
6. Conclusion
References


1. Introduction
2. Overview of mode decision
3. An early SKIP mode decision method
4. Experimental Results
5. Conclusion
Acknowledgements
References


1. Introduction
2. Updatable Scalable Video Coding
3. Simulation Experiments
4. Conclusions
References


1. Introduction
2. Proposed Schemes
3. Performance Evaluation
4. Conclusion
References


1. Introduction
2. Device structure and fabrication process
3. Results and discussion
4. Conclusion
References


1. Introduction
2. Triplet Search Motion Estimation
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Open Programmable Networks and IP QoS
3. Conveged LAN System
4. Control Mechanism
5. Conclusion
References


1. Introduction
2. facial expression recognition
3. Study and recognition with neural net work
4. Experssion Recognition result
5. Expression selection for identification
6. Simulation
7. Conclusions
References


1. Introduction
2. Pre-processing and feature extraction
3. Hippocampal neural network algorithm
4. Experiment data and results
5. Conclusions
References


1. Introduction
2. Proposed Error Concealment Technique
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Multicast in MPLS Environment
3. New Approach to Setup Multicast Tree
4. Performance Evaluation
5. Conclusions and Future Work
References


1. Introduction
2. Explanation of the EBMA
3. The Evaluation Results
4. Conclusion
Acknowledgements
References


1. Introduction
2. Proposed Post-filtering Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Harr Basis Function
3. Integral Image
4. Adaboost
5. The Porting Of Embedded System
6. Conclusion
Reference


1. INTRODUCTION
2. ACTION RECOGNITION AND SYNTHESIS
3. BODY SEGMENTATION
4. PROPOSED HUMAN ACTION SYNTHESIS
5. EXPERIMENTAL RESULTS AND DISCUSSIONS
6. CONCLUSIONS
Acknowledgment
7. REFERENCES


1. Introduction
2. Proposed Enhancement Method
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Related works
3. Suggested Algorithm
4. Experimental Results
5. Conclusions
6. Acknowledgements
References


1. Introduction
2. Related works
3. Energy consumption
4. Variable Stages Pipeline
5. Results
6. Conclusion
7. Acknowledgments
References


1. Introduction
2. Proposed Image Compression Algorithm
3. Simulation Results
4. Hardware Implementation Results
5. Conclusion
References


1. Introduction
2. Proposed Error Concealment Algorithm
3. Experiment Results
4. Conclusion
References


1. INTRODUCTON
2. PROPOSED ALGORITHM
3. EXPERIMENTAL RESULTS
4. CONCLUSION
5. REFERENCE


1. Introduction
2. System Implementation and Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. The LTJ adaptive filter
3. A Practical Implementation Method
4. Experiment
5. Conclusion
References


1. Introduction
2. Non-intrusive Iris Recognition Using an Omnidirectional Camera
3. Multi-view Face Detection for a Catadioptric Omnidirectional Camera
4. Experiment
5. Conclusion and FutureWork
Acknowledgements
References


1. Introduction
2. Neville filter
3. Lifting using Neville filter
4.Wavelet packet
5. PIWS
6.Simulation and Result
7. Conclusion
References


1. Introduction
2. Methods
3. Conclusions
References


1. Introduction
2. Proposed algorithm
3. Simulation results
4. Conclusions
References


1. Introduction
2. Adaptive Wavelet Transform
3. EZW
4. Numerical Simulation and Result
5. Conclusion
Reference


1. Introduction
2. Uniform Microphone Array Based on Complementary Beamforming
3. Proposed Nonuniform Microphone Array System
4. Simulation and Discussion
5. Conclusion
References


1. Introduction
2. Speech Recognizer with Medium Variable Size of Vocabulary
3. Experiment and Discussion
4. Conclusion
References


1. Introduction
2. Wavelet Analysis
3. Proposed Method
4. Simulation and Results
5. Conclusion
References


1. Introduction
2. The evaluation Method
3. Experimental Data
4. Evaluation Results
5. Conclusion
Reference



1. Introduction
2. DC Quantization Noise Reduction
3. AC Quantization Noise Reduction
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Design of Portable Electrocardiograph
3. Experiment and Result
4. Conclusion
References


1. Introduction
2. Performance Analysis of the Cricket system
3. New System and Its Experimental Result
4. Conclusions and FutureWorks
Acknowledgement
References


1. Introduction
2. The proposed Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. Circuit Representations
3. Optimization Method
4. Simulation Results
5. Summary
acknowledgment
References


1. Introduction
2. Suffix Tree Clustering
3. Web search result clustering for Thai web pages
4. Synthesizing Thai cluster label
5. Experimental result
6. Conclusion
References


1. Introduction
2. Overall Structure and Generic Features
3. Media Speci?c Extension
4. TeM/BiM Specific Extension
5. MPEG-7/TV-Anytime Forum Specific Extension
6. Conclusion
Acknowledgment
References


1. Introduction
2. Basic Concept
3. Tennis
4. Golf Swing and Semaphore
5. Discussion of limitation of recognition category by simulation
6. Conclusion
Reference


1. Introduction
2. Basic model for a low-power pipelined system
3. Application to a motion-vectordetection VLSI processor
4. Conclusion
References


1. Introduction
2. Multiple Description Coding
3. Proposed Method
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Web-basedWord Sense Description System
3. Evaluation and Discussion
4. Discussion
5. Conclusion
References


1. Introduction
2. Loo¡¯s model for LEO satellite chanenl Conditions
3. Regular LDPC Codes with LEO Channel
4. Numerical and Simulation Results
5. Conclusion
References


1. Introduction
2. The Proposal Scene Segmentation Method
3. Key Frame Detection Method
4. Experiment Results and Analysis
5. Conclusion
References


I. INTRODUCTION
II. EVEN HARMONIC MIXER ARCHITECTURE
III. POST SIMULATION PERFORMANCE
IV. COMPARISON TO FUNDAMENTAL MIXER
V. CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES


1. Introduction
2. Viterbi Algorithm
3. ACSU Architecture
4. Numerical Computation Results
5. Conclusions
References


1. Introduction
2. Proposed Watermark Embedding Method
3. Results of Computer Simulation
4. Conclusion
References


1. Introduction
2. DVB-SSP system model
3. MPE-FEC decode th techniques by LLR method proposed
4. Simulation results
5. Conclusions
References


1. Introduction
2. Why do we need new backhaul architecture?
3. Key factor for upcoming backhaul network
4. Current backhaul network architecture
5. Proposed network architecture
6. Conclusion
References


1. Introduction
2. The Proposed Algorithm
3. Experimental Results
4. Conclusions
References


I. INTRODUCTION
II. SYSTEM DESCRIPTION
III. DC Offset COMPENSATOR
IV. TIMING RECOVERY & SIMULATION
V. CONCLUSION
REFERENCES


1. Introduction
2. Z: Formal Specification Language
3. XML
4. ZEditor Application
5. Related Works
6. Conclusions and Future Works
References
Appendix


1. Introduction
2. Camera calibration
2. Lens distortion compensation
3. Orthogonal image generation
4. Experiental results
5 Conclusion
References


1. Introduction
2. Related work
3. Experiment setup
4. Experiment analysis
5. Conclusion
References


1. Introduction
2. Antenna Selection and CP Transmission
3. Criteria for Antenna Selection
4. Numerical simulations
References


1. Introduction
2. Video Redundancy Coding in H.263+
3. Proposed Adaptive Video Redundancy Coding
4. Experimental Results
5. Conclusions
References


1. Introduction
2. The modified split-radix 2/4/8
3. Variable FFT processor
4. Conclusion
References


1. Introduction
2. The structure of TN LC SLM
3. Jones matrix calculus
4. The proposed method
4. Discussion
5. Optical setup
6. Conclusion
References


1. Introduction
2. Auto-Calibration
3. Key-Frame Selection
4. LMedS based Absolute Quadric Estimation
5. Experiment Result
7. Conclusion
References


1. Introduction
2. Proposed System
3. Computer Simulated Results
4. Conclusion
References


1. Introduction
2. System Model
3. Computer Simulated Results
4. conclusion
References


1. Introduction
2. Sensor Projection Matrix
3. Visibility Criterion by Sensor Projection
3. Proposed Method
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Encryption process
3. Identification and Decryption process
4. Computer simulations
6. Conclusions
References


1. Introduction
2. Theorem of BPCGH
3. SA algorithm
4. TS algorithm
5. The Optimization of binary phase computergenerated holograms.
6. Simulation
7. Conclusion
References


1. Introduction
2. Iterative Approaches Based on the Theory of POCS
3. Proposed Constraint Sets and Projection Operators
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Design of LWIPv6 architecture and Protocols
3. Design and Optimization Results from LWIPv6 Sensor Protocols
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Algorithm Description
3. Evaluation Result
4. Conclusion
5. Future work
References


1. Introduction
2. Classification of Lost Block
3. Error Concealment Algorithm for Each Class
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Embodiment and design of optical system
3. Performance and discussion
4. Summary
5. References


1. Introduction
2. Preliminary remarks
3. Hamiltonian cycle on ESTsub{n}
4. Conclusion
References


1. Introduction
2. The frequency properties of composite color video signal
3. Conventional Y/C separation methods
4. Proposed Y/C Separation Algorithm
5. Experiment Results
6. Conclusion
References


1. Introduction
2. Related work
3. Experiment setup
4. Experiment result analysis
5. Conclusion
References


¥±. NEIGHBOR LISTS REDUCING ALGORITHM
¥². PERFORMANCE EVALUATION
REFERENCES


1. Introduction
2. Geometric Active Contour
3. Edge Function
4. Segmentation for Video Sequences
5. Experimental Results
6. Conclusions
References


1. Introduction
2. Phase-Only Correlation
3. Subpixel Displacement Estimation
4. Estimation Error
5. Experiments
6. CONCLUSION
References


1. Introduction
2. Step up Converter
3. Circuit operating Analysis
4. Comparison of simulation and measurement
5. Conclusion
References


1. Image restoration by Wiener filter
2. The approximated fast form of Wiener filter
3. Image restorations by the fast map
4. Conclusions
References


1. Introduction
2. Conventional Scheme: one stage search
3. Proposed Scheme: two stages search
4. Conclusions
Acknowledgement
References


1. Introduction
2. System model
3. Conventional synchronization algorithm
4. Proposed synchronization algorithm
5. Simulation Results
6. Conclusion
References


1. Introduction
2. Proposed Motion Estimation Algorithm
3. Experimental Results
4. Conclusion
References


1. Introduction
2. The Proposed Motion Vector Refinement Algorithm
3. Experimental Results
4. Conclusions
References


1. Introduction
2. BLOCK Architecture
3. Conclusions
References


1. Introduction
2. Image processing functions for Post PC
3. Structure of hardware components
4. Structure of software modules
5. Implementation and Conclusion
References


1. Introduction
2. Encoder Structure in DVB-S2 Standard
3. Decoder Structure in DVB-S2 Standard
4. Partial Parallel Algorithm for LDPC Decoder
5. The partially parallel structure
6. Conclusion
References


1. Introduction
2. Proposed System
3. Performance Analysis
4. Conclusion
Acknowledgement
References


1. Introduction
2. Proposed Intensity Compensation Algorithm
3. Experimental Results
4. Conclusion
References


1. Introduction
2. FPGA remote-reconfiguration technology
3. Remote Logic Analyzer
4. Evaluation of Logic Analyzer IP
5. Summary and Conclusion
References


1. Introduction
2. Push to Talk Implementation
3. Network Topology of PTT Service
4. Future Technology of PTT Service
5. Conclusion
References


1 .INTRODUCTION
2. THE LP METHOD
3. OPITIMIZING THE ASSEMBLE DSP SYSTEM
4. COMPARISON AND CONCLUSION
REFERENCES


1. Introduction
2. Cluster Tree Reconfiguration
3. Methodology
4. Simulation Results
5. Conclustion
References


1. Introduction
2. OFDM Signal Model
3. Proposed Method
4. Simulation Results
5. Conclusions
Reference


1. Introduction
2. Interpolation Technique with Warping
3. Decision of Parameters
4. Conclusions
References


1. Introduction
2. A Quasi-Orthogonal STBC Scheme
3. Beamforming System Combined with (4,1) STBC
4. Simulation Results
5. Conclusions
References


1. Introduction
2. F-PDCH System Model
3. Simulation Results
4. Conclusions
References


1. Introduction
2. Proposed Error Recovery Scheme
3. Error Concealment Algorithm
4. Simulation Results
5. Conclusion
References


1. Introduction
2. System model
3. The proposed scheduling algorithm
4. Simulation results
5. Conclusions
References
Acknowledgement


1. Introduction
2. Signal Models
3. Proposed method
4. Simulation result
5. Conclusion
References


1. Introduction
2. Restoration Algorithm
3. Numerical Results and Conclusion
References


1. Introduction
2. Hue-based corner detector
3. Experimental results and discussions
4. Conclusions
References


1. Introduction
2. Delta Modulation Techniques
3. Normalized Modulator Parameters
4. Evaluation of PWM techniques
5. Experimental and simulation
6. Conclusion
References


1. Introduction
2. Background
3. Proposed Methods
4. Experimental Settings
5. Experimental Results and Discussions
6. Conclusions
7. Acknowledgement
References


¥°. INTRODUCTION
¥±. OFDM SIGNAL MODEL
¥². ADAPTIVE PILOT-ASSIGNMENT OFDM
¥³. NUMERICAL RESULTS
¥´. CONCLUSIONS
REFERENCES


1. Introduction
2. Extraction of Robust Features
3. Experiments and Results
4. Conclusion
References


1. Introduction
2. The Concurrent PCT
3. Experiment
4. Result Images
5. Performance
6. Conclusion
References


1. Introduction
2. Leakage and Grid Effect
3. Digital Signal Processing for Design Data
4. Analysis of Experimental Data
5. Conclusion
References


1. Introduction
2. Background
3. Proposed Method
4. Experimental Results and Discussions
5. Conclusions
References


1. Introduction
2. Block-Based Video Coding
3. Proposed Methods
4. Experimental Setting
5. Experimental Results and discussions
6. Conclusion
7. Acknowledgment
References


1. Introduction
2. System Model and Assumptions
3. Proposed Algorithms
4. Simulation Results
5. Conclusions
References


1. Introduction
2. Conventional clustering algorithm
3. Proposed Algorithm
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Circuit descriptions
3. Simulation results and Discussion
4. Conclusions
5. References


1. Introduction
2. UWB Pulses
3. Signal Model
4. Numerical Analysis
5. Numerical Results
6. Conclusions
References


1. Introduction
2. Related Work
3. Overall Architecture for Privacy Policy Management
4. Scenario
5. Conclusion
References


¥°. INTRODUCTION
¥±. CIRCUIT DESIGN
¥². IMPLEMENTATION
¥³. CONCLUSION
REFERENCES


1. Introduction
2. Problem formulation
3. Multiuser channel shortening
4. Simulation results
5. Conclusion
Acknowledgment
References


1. Introduction
2. OSTBC systems
3. Joint symbol detection and channel estimation
4. Simulation results
5. Conclusion
Acknowledgment
References


1. Introduction
2. Circuit Configuration and It¡¯s Operation
3. Experiment Result
4. Conclusion
References


1. Introduction
2. Related work
3. Depth map acquisition
4. Proposed depth map fusion method
5. Simulation results
6. Conclusion
7. Acknowledgements
References


1. Introduction
2. Background
3. Proposed Method
4. Experimental Settings
5. Experimental Results and Discussions
6. Conclusions
References


1. Introduction
2. Circuit Description
3. Simulation and Measurement Results
4. Conclusion
Acknowledgement
References


1. Measurement Setup
2. Measurement Setup
3. Analysis of Measurements
4. Conclusion
References


¥°. Introduction
¥±. Problem Formulation
¥². Data Fusion Tracking Algorithm
¥µ. Simulation Results
¥¶. Conclusion
References


1. INTRODUCTION
2. ASYMMETRIC SENSE AMPLIFIER FOR SINGLE-ENDED MEMORY ARRAYS
3. LOW POWER ASYMMETRIC SENSE AMPLIFIER ROM
4. CONCLUSION
5. REFERENCE


1. Introduction
2. Implementation of the Digital Front-End Platform
3. Transmitter of the Digital Front-End
4. Receiver of Digital Front-End
5. Experiment by MPEG-4 Streams
6. Concluding Remarks
Acknowledgments
References


1. Introduction
2. ECG Morphology
3. The Parameter Extraction Method in MCG Signals
4. Method
5. Discussions
6. Conclusions
References


1. Introduction
2. Neuron MOS Transistor
3. Conventional Design Method
4. Proposal of a New Design Method
5. Experimental Results
6. Design an Optimal Mixture Circuit
7. Conclusion
References


1. Introduction
2. Highly Integrated Downconverter MMIC
3. Active baluns for power splitting
4. Conclusion
Acknowledgement
References


1. Introduction
2. Antenna Structure
3. Design of Antenna
4. Results and Discussions
5. Conclusion
Acknowledgements
References


1. Introduction
2. RF-ID System Design
3. Gateless Fare Collection System
4.Experimental results and simulation
5. Conclusion and further work
References


1. Introduction
2. AES-Rjindael Algorithm
3. Power Analysis Attack
3. DPA Attack on AES algorithm
5. Experiment Results
6. Countermeasures
7. Conclusions
8. Acknowledgement
References


1. Introduction
2. Counter Tree Diagrams
3. Design of redundant-binary adders
4. Experimental design
5. Conclusion
References


1. Introduction
2. Proposed Circuit
3. Conventional Circuit
4. Simulation
5. Conclusion
References


1. Introduction
2. Indoor Wireless Optical Communication System
3. Simulation and Analysis Results
4. Conclusions
References


1. Introduction
2. Modeling of directional coupler type hollow waveguide optical switch
3. Fabrication and characterization of hollowwaveguide directional-coupler optical switch
4. Conclusions
Acknowledgments
References


1. Introduction
2. Pulse skip control
3. Experiment and result
4. Conclusion
References


1. Introduction
2. Streaming based on the Video Staging
3. Adaptive Chunk Algorithm
4. Performance Simulation
5. Conclusion
References


1. Introduction
2. Particle Filters with Multiple Observation Models for Visual Object Tracking
3. Experimental Results of Visual Object Tracking with Particle Filters
4. Conclusions and Discussion
References


1. Introduction
2. Circuit Configuration and Operation
3. Power Loss Estimating
4. Proposed Method 1
5. Proposed Method 2
6. Simulation Results
7. Conclusion
References


1. Introduction
2. Modified pseudo orthogonal M-sequence sets
3. The proposed OCDMA system
4. Normalized throughput
5. Theoretical analysis
6. Numerical results
7. Conclusion
Acknowledgment
References


1. INTRODUCTION
2. KOREAN INDUSTRIAL STANDARD FOR POWER LINE COMMUNICATION
3. PROPOSED SYSTEM
4. REQUIRED EMISSION LIMIT
5. CONCLUSION
6. REFERENCES


¥°. Introduction
¥±. Theory of a ballasts
¥². The modified EBN(MEBN).
¥³. Experimental results
¥´. Conclusion
Conference


1. Introduction
2. Proposed Method
3. System evaluation
4.Conclusion
Acknowledgement
References


1. Introduction
2. Implementation of high speed base-line JPEG encoder
3. Implementation of input buffer
4. Interfacing with other module
5. Timing map for real-time processing
6. Conclusion
7. References


1. Introduction
2. Electrical Distribution System
3. Research Methodology
4. Example of System and Optimization Result
5. Conclusions
References


1. Introduction
2. System Design
3. Video Switching using Signal Processing
4. Experimental System
5. Conclusion
References


1. Introduction
2. Definition of multi-dimensional E-sequences
3. Construction of multi-dimensional E-sequences
4. Logic functions of E-sequences
5. Conclusion
References


¥°. Introduction
¥±. Theory of the VCXOs
¥². VCXO design with the PECL
¥³. Experimental results
Conclusion
References


1. Introduction
2. Research Methodology
3. Experiments and Results
References


1. Introduction
2. Structure of Robot Hand
3. System for Control with Data Glove
4. Evaluation
3. Conclusion
References


1. Introduction
2. FEM modeling of dielectric resonator
3. Linearity in frequency sweep
4. Experimental Results
5. Conclusion
6. Reference


1. Introduction
2. OTA
3. OTA-C integrator loop structure
4. Current-and voltage-mode biquadratic circuits
5. Design Example and Simulation Results
6. Conclusions
References


1. Introduction
2. Local Feedback Linear Transconductor
3. Using NIC to Improve Output Impedance
4. NIC voltage divider
5. Filter Design
6. Simulation
7. Conclusion
References


1. Introduction
2.Circuit Description
3. Simulation Result
4. Summary
5. Acknowledgement
References


1. Introduction
2. Single FET Amplifier Characteristics
3. RF FET Switch Circuits
4. Multi-Amplifiers with Switches
5. Conclusion
References


1. Introduction
2. Imitation by watching
3. Conclusion
References


1. INTRODUCTION
2. A PARALLEL COUPLED-LINE STRUCTURE FILTER
3. FILTER DESIGN AND RESULTS
4. CONCLUSIONS
5. ACKNOWLEDGMENT
6. REFERENCES


1. Introduction
2. Basics of doherty amplifier and LINC
3. Characteristics of electrothermal memory effect
4. Design of compensated LINC for doherty amplifier
5. Conclusions
References


1. Introduction
2. Circuit configuration and operating principle
3. Simulation results
4. Nonidealities
5. Conclusion and future subjects
6. Acknowledgement
References


1. Introduction
2. HBT Equivalent Model Parameters Extraction
3. Active Bias Circuit Design
4. PA Circuit Design
5. PA Fabrication & Measurement
6. Conclusion
References


1. INTRODUCTION
2. CDMA CELLULAR SYSTEM
3. CHANNEL ASSIGNMENT SCHEME FOR CDMA SYSTEM
4. POWER ALLOCATION MECHANISMS
5. SIMULATION MODEL
6. ANALYSIS OF RESULTS
7. CONCLUSION
REFERENCES


1. Introduction
2. Device structure and Operation
3. Device simulation and Results
4. Conclusion
5. Acknowledgement
6. Reference


1. Introduction
2. Circuit Design
3. Bias Current Control with Band Selecting Circuit
4. Simulation Results
5. Experimental Results
6. Conclusion
7. Acknowledgement
References


1. Introduction
2. The new synthesis algorithm for low power design
3. The High-Level Power Estimation Methodology
4. Experimental Results
5. Conclusion
Reference


1. Introduction
2. Circuit Description and Operation
3. Simulation Results
4. Experimental Results
5. Conclusion
References


1. Introduction
2.Signature Verification System
3. File Structure and Security Mechanism of Smart Card
4. ON, OFF Line authentication process in User Authentication
5. User Authentication using Signature
6. Conclusion
Reference


1. Introduction
2 . Device structure and characteristics
3. SIMULATION AND RESULTS
4 . Conclusion
5. Acknowledgement
6. Reference


1. Introduction
2. Noise Reduction in Spectrum Domain
3. Running Spectrum Filtering
4. Experiments for Evaluation
5. Discussions
6. Conclusions
7.References


2. Quadratic power residue test
3. The Smart algorithm
4. Square root calculation (proposal)
5. Comparison between the Smart and proposed algorithm
References


1. Introduction
2. Device Description
3. Simulation Results and Discussion
Conclusion
Acknowledgement
References


1. Introduction
2. The subband coding with the set [6, 3, 2]
3. Conclusions
References


1. Introduction
2. Shape-Variable Truncated Baker Transformation
3. Proposed Encryption Scheme
4. Experimental Results and Discussion
5. Conclusions
References


1. Introduction
2. V-BLAST Detection Algorithm for MIMOOFDM Systems
3. Proposed Adaptive Coding Bit Allocation (ACBA) Scheme
4. Simulation Results
5. Conclusion
References


1. Introduction
2. An Attention Module
3. A Clustering Algorithm
4. Display on a PDA
5. Conclusion
References


1.. Introduction
2. Public Key Certificate and Attribute Certificate
3. Public Key certificate and attribute certificate binding method
4. Binding Certificate issuance process
5. Database Accass Control Method Using Automatic Signature
6. Conclusion
Reference


1. Introduction
2. Conventional Audio Watermarking Method Based on Low-Frequency Amplitude Modification
3. Proposed Multiple Embedding Method
4. Experimental Results
5. Conclusion
References


1. Introduction
2. Conventional Audio Watermarking Method Using Smearing Transformation
3. Sound Quality Improvement by Eliminating High Frequency Component from Signature Impulse
4. Experiments
5. Conclusion
References


1. Introduction
2. Composition of Automated Administration System
3. Construction of Judgment Part
4. Authentication Method for Configuration Change
5. Actual Example
6. Conclusion
References


1. Introduction
2. Related Work
3. Authentication Protocol
4. Security Analysis
5. Conclusion
References


1. Introduction
2. Preliminaries
3. Our method
4. Example of applying our method
5. Experimental Results
6. Conclusion
References


1. Introduction
2. Related Work
3. Discussion
4. Conclusion and Future Work
5. Acknowledgments
References


1. Introduction
2. Design issue
3. Proposed architecture
4. Implementation and performance
5. Conclusion
Acknowledgement
References


1. Introduction
2. ICA model for analysis of sensor array measurement data
3. Experimental Results
4. Conclusion
References


1. Introduction
2. Face Detection Using HSI and Elliptical Masking
3.Face feature Detect Using Preprocess
4. Evaluation Function about Face Feature Vector
5. Face Analysis with Classification of Eyebrows, Eyes, Mouth and Face Types
6. Experimental Results
7.Conclusion
References


1. Introduction
2. Filed-Programmable Digital Filter
3. Prototype Chip Design
4. Future Prospects of MV-CML Circuit Technology
5. Conclusion
Acknowledgments
References


1. Introduction
2. Basic Concept of Topic map and RDF
3. Conversion Topic map to RDF
4. Conversion result
5. Related Work
6. Conclusion
References


1. Introduction
2. Face Region Extraction and Feature Extraction
3. Rotation correction by eye feature extraction
4. Face Recognition using Principle Component Analysis
5. Experimental Results
6. Conclusion
References


1. Introduction
2. HVAC System
3. Feedback Linearization for nonlinear HVAC system
4. Adaptive Fuzzy Output Feedback Control
5. Simulation
6. Conclusions
Acknowledgement
References


1. Introduction
2. Design and Analysis of VDC
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Feature extraction method
3. 3D VAR Model
4. Experiment and result
5. Conclusion
References


1. Introduction
2. Variable Quad Rate ADPCM
3. Implementation
4. Conclusion
References


1. Introduction
2. Excitable Digital Reaction-Diffusion System
3. Shortest Path Search Algorithm
4. Conclusion
References


1. Introduction
2. Skin Region Detection
3. A situation extraction of an eye
4. Experimentation and the results
5. Conclusion
References


1. Introduction
2. Front-end design and operation principle
3. Simulation result
4. Conclusion
Acknowledgement
References


1. Introduction
2. Architecture And Circuits
3. Experimental Results
Acknowledgement
References


1. Introduction
2. A Basic Algorithm for Face Detection
3. The Proposed Face Detection Algorithm
4. The Proposed Eye Detection Algorithm
5. Experimental Results
6. Conclusions
References


1. Introduction
2. Minority Game
3. Extended Game with information controller
4. Simulation
5. Discussion
6. Conclusion
References


1. Introduction
2. Basic concept od EGG
3. Synthesis of current mirrors using EGG
4. Accelerating evolution based on transmigration
5. Conclusion
References


1. Introduction
2. Background
3. Face Detection System
4 The Real-time System
5. Conclusion
References


1. Introduction
2. RSSI Design
3. Simulation Results
4. Conclusion
Acknowledgment
References


1. Introduction
2. Consepts of the presented Quadrature VCO
3. Circuit design
4. Experimental Result
5. Conclusion
Acknowledgment
References


1. Introduction
2. Extended Connection Retrieval Time
3. Idle Period Analysis
4. Packet Delay Analysis
5. Numerical Examples
6. Conclusions
References


1. Introduction
2. Frontal Face and Vocal Experts
3. Proposed Multi-modal Verification System
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Fundamentals of the Algorithm
3. Video Object Segmentation System
4. Experiments
5. Conclusion
References


1. Introduction
2. SNMP Information Based Routing Mechanism
3. Scheme for Enhancement of Handoff Delay Diminution by Using SNMP Information Based Routing
4. Experiments
5. Conclusion
References


1. Introduction
2. Proposed Algorithm
3. Design and Verification
4. Conclusion
Acknowedgmentt
References


1. Introduction
2. Layer Structure
3. Design and Simulation
4. Conclusion
Acknowledgments
References


1. Introduction
2. Route Discovery
3. Simulation Environment
4. Simulation Results
5. Conclusions
References


1. Introduction
2. SOC-UWB-IR System
3. Modi?ed SOC-UWB-IR System
4. Performance Analysis
5. Simulation Results
6. Conclusions
References


1. Introduction
2. The Structure of Diameter Server
3. The Implementation of Diameter IAPP Server
4. Conclusions
References


1. Introduction
2. VLAN
3. Dynamic VLAN Registration Protocol
4. GVRP Extension
5. Conclusion
References


1. Introduction
2. Overall Architecture
3. Hardware Decode Unit
4. Performance
5. Conclusion
References


1. Proposed circuit
2. Simulation
3. Simulation result by SIMetrix
4. Conclusion
References


1. Introduction
2. Network architecture for multimedia service
3. Network architecture for multimedia services
4. Call Processing Procedures Diagram for multimedia Services
5. Multimedia Call Scenario
6. Performance Evaluation
6. Conclusion
References


1. Introduction
2. Fundamentals
3. Multi-Camera System
4. Experiments and Evaluations
5. Conclusions
References


1. Introduction
2. Analysis
3. Experimental Results
4. Conclusion
Referrences


1. Introduction
2. Assured Service and Pricing
3. Pricing the Elastic Traffic
4. Conclusions
References


1. Introduction
2. Standard Existing Full Adder Cells
3. Full Adder Categorization
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Advanced Terrestrial DMB System
3. Turbo Code for AT-DMB
4. Design and FPGA Implementation Results
5. Conclusions
References


1. Introduction
2. M-Channel linear filter banks
3. DWT MC-CDMA and FH System
4. Proposed System Model
5. Simulation and Results
6. Conclusion
Reference


1. Introduction
2. Time Petri Nets and BUC
3. Scheduling Algorithm
4. CONCLUSION
REFERENCES


1. Introduction
2. Self-similarity of traffic
3. Traffic models
4. Traffic measurement and analysis
5. P2P traffic modeling results
6. Summary
References


1. Introduction
2. Soft decision decoding methods
3. Results
4. Conclusion
References


1. Introduction
2. Error Diffusion Method in PDP
3. Experimental Results
4. Conclusion
Acknowledgement
References


1. Introduction
2. Definitions
3. A Known Heuristic Algorithm K-LAG
4. Proposed Algorithms K-LAG-V and K-LAG-S
5. Experiment Results
6. Concluding Remarks
Acknowledgments
References


1. Introduction
2. MPLS Modes
3. Architecture of LC-ATM Interface for MPLS Interworking in ATM LSR
6. Conclusions
References


1. Introduction
2. Video Object Tracking System
3. Techniques for Parallel Tracking
4. Experimental Results and Analysis
5. Conclusion
References


1. Introduction
2. Method of analysis
3. Boundary elements analysis of radiation sound field of micro-speaker
4. Measurement of an acoustic center
5. Conclusion
References


1. Introduction
2. The existing restoration methods
3. The Restoration Method supporting the differential service
4. Simulation Analysis
5. Conclusion
References


1. Introduction
2. Supply Current Testing of Resistor String DACs
3. DFT of DACs for Current Testing
4. Evaluation of DFT
5. Conclusion
Acknowledgment
References


1. Introduction
2. Design and Implementation
3. Evaluation Results
4. Conclusion
References


1. Introduction
2. The Switch Architecture
3. Performance Analysis
4. Conclusion
References


1. Introduction
2. Topic Maps for Services (TM-S)
3. TM-S Modeling
4. Query Language for TM-S
5. Conclusion and Future work
6. Acknowledgements
7. References


1. Introduction
2. Preliminary experiments
3. Arm movement estimation system
4. Assessment experiments
5. Conclusion
References


1. Introduction
2. Related Work
3. Indexing with Mutibit Trie Algorithm
4. Performance and Memory Usage
5. Conclusions
References


2. E-mail-based telemonitoring system
3. Results
4. Discussion
Acknowledgments
References


1. Introduction
2. Ground-base Augmentation System for GPS integrity Assurance in KOREA
3. Translation on Reliability and Safety Requirements of GNSS
4. The Enhancement of Reliability and Safety on GNSS for Train Control Application
5. Conclusion
References


1. Introduction
2. New ATM Switch Architecture
3. Performance Analysis
4. Conslusions
References


1. Introduction
2. LED Light Fiber Panel Array
3. Typical Radiation Pattern Collimation Optics
4. Conclusion
5. References


1. Introduction
2. Evolution Into A Global Wireless System
3. Wireless Technonogy
4. Conclusion
References


1. Introduction
2. Network structure
3. Routing algorithm
Conclusions
Acknowledgements
References


1. Introduction
2. Previous offset-cancellation method
3. Proposed offset-cancellation method
4. Simulation Results
5. Conclusions
6. Acknowledgments
References


1. Introduction
2. Conventional level shifter
3. The proposed level shifter
4. Simulation results
5. Conclusions
References


1. Introduction
2. B-WLL Trial System
3. BMWS
4. Conclusions
References



1. Introduction
2. Channel Conditions and Requirements
3. Various UWB Solutions
4. Remaining Issues
5. Conclusions
References


1. Introduction
2. Overview of Wireless Sensor Network
3. CBNPM: Communication-based Node Power Management
4. Conclusion
References


1. Introduction
2. Conventional Pixel Circuit for AMOLED
3. Proposed Pixel Circuit for compansating Threshold Voltage Shift
4. Conclusions
Acknowledgment
References


1. Introduction
2. Adaptive Random number generator
3. Implementation & Simulation
4. Verification
5. Synthesis Result
6. Conclusion
7. Acknowledgment
References


1. Introduction
2. The System Description
3. Numerical Results
4. Conclusion
REFERENCE


1. Introduction
2. Particle Filtering
3. Simulation
4. Conclusions
References


1. Introduction
2. Issues to safe farm products cultivation
3. Development system
4. Details of entry screen without screen transition
5. Achievements, problems and future potentials
References


1. Introduction
2. Previous works
3. Emotion
4. Overview of the system
5. KBANN
6. Evaluatition
7. Conclusion
References


1. Introduction
2. System Model
3. Performance Analysis
4. Numerical Results
5. Conclusions
REFERENCES


1. INTRODUCTION
2. REED-MULLER CODE AS A GOLAY COMPLEMENTARY SEQUENCE
3. PAPR REDUCTION OF OFDM
4. REDUCED COMPLEXITY DECODING FOR RM CODE
5. CONCLUSIONS
6. REFERENCES


1. Introduction
2. Sub-Solution Space and Max-Flow Scheduling
3. Perturbation of SSS by Random Walk
4. Experiment
References


1. Introduction
2. Key Properties of DTNs
3. Routing Issues in DTNs
4. Routing Protocols
5. Comparison
6. Conclusion
References


1. Introduction
2. GPRS Network Structure and Packet Flow
3. The Structure of GGSN Node
4. The Models of Traffics [11]
5. Simulation Results
6. Conclusion
References


1. Introduction
2. Related Researches
3. Dynamic paging area construction technique
4. Simulation and analysis
5. Conclusion
References


1. Introduction
2. AAA overview
3. AAA issues and solutions
4. Simulation
5. Conclusion
References


1. Introduction
2. Methods
3. Experimental result
4. Conclussion
References


1. Introduction
2. Existing Fast Handover Methods
3. The Method to Limit BET Length
4. Performance Analysis
5. Conclusions
References


1. Introduction
2. Asynchronous DS/CDMA system with the Kronecker sequence
3. Kronecker Sequence with Partial-Period Correlation
4. Differentially-Coherent Detection with Partial-Period Correlation
5. Conclusion
Reference


1. Introduction
2. Pattern omission method
3. Simulation method and result
4. Conclusion
Acknowledgments
References


1. Introduction
2. The proposed method
3. Simulation results
4. Conclusions
Acknowledgment
References


¥°. Introduction
¥±. Existing Cell Area Decision Method
¥². Proposal of New Cell Area Decision Method
¥³. Conclusion
REFERENCES


1. Introduction
2. Transmitter and Receiver Structure with STBC-TD
3. The Characteristics of the Moving Average
4. Simulation Results
5. Conclusions
References


1. Introduction
2. 2D Gabor and Separable Gabor Filter
3. WSSG Filter
4. WSSG Filter in Embedded System
5. WSSG Filter using LUT
6. Experimental
7. Result
References


1. Introduction
2. Multi-Dimensional Transform Scheme
3. Experimental Results
4. Conclusion
Acknowledgements
References


1. Introduction
2. System Model
3. Bit Error Probability
4. Numerical Results
5. Conclusions
References


1. Introduction
2. OFDM system model and Interference signal/system model
3. OFDM system performance analysis and interference reduction/cancellation technique.
4. Conclusion
REFERENCES


1. Introduction
2. Image Quadrant Division
3. Optimal Estimate
4. Simulation
5. Conclusions
References


1. INTRODUCTION
2. FEATURE-BASED TUMOR DETECTION
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
REFERENCES


1. Introduction
2. Automotive Multiplexed Wiring System
3. Channel Responses
4. Channel Multiplexing using Binary CDMA
5. Simulation Results
6. FPGA Implementation
7. Conclusions
Acknowledgement
References


1. Introduction
2. Design and implementation of Diameter transport using TLS over SCTP
3. Performance analysis
4. Conclusion
References


1. Introduction
2. Related Works
3. Proposed Image Search Descriptor
4. Results
5. Conclusions
References


1. Introduction
2. Gabor Filter
3. Matching Pursuit
4. Haar Wavelet
5. Experiment
6. Conclusion
References


1. Introduction
2. Circuit Design and Simulation Results
3. Measurement
4. Conclusions
References


1. Introduction
2. Pausible Clocking Scheme
3. Basic Idea
4. Structure of Wrapper
5. Design and Simulation
5. Conclusions
References


1. Introduction
2. Proposed Object Segmentation algorithm
3. Experiment Results
4. Conclusion
References


1. Introduction
2. Proposed Hybrid Motion Estimation Considering Motion Characteristics
3. Experimental Results
4. Conclusions
Acknowledgement
References


1. Introduction
2. The new scheduling algorithm for low power
3. Rescheduling in a minimum bound process
4. Enable power management for low power
5. Experimental Results
6. Conclusion
Reference


1. Introduction
2. Reconfigurable Logic Architecture
3. Evaluation Models and Experiment Environment
4. Experimental Results
5. Discussions
6. Conclusions
References


1. Introduction
2. Proposed HCRIC
3. Results of Simulation
4. Conclusion
Acknowledgments
References


1. Introduction
2. The Accelerator
3. Evaluation
4. Conclusion
Acknowledgement
References


1. Introduction
2. EDA Tools and Target Hardware Platform
3. Development Strategy
4. Development of the Co-Design Environment
5. Design Example
6. Conclution
References


¥°. Introduction
¥±.Current mode multi-valued T-gate
¥². Design of addition gate and multiplication gate on the GF(p)
¥³. Conclusion
References


1. Introduction
2. Parallel-axis Stereoscopic Camera
3. Experimental Results
4. Conclusions
References


1. Introduction
2. The Data Set
3. The Web Application Specifications
4. Association Rules Extraction Method
5. Results
6. Conclusion and Future Work
References


1 Introduction
2 Computational model of transmission line
3 Evaluation of integral equation
4 Transmission line terminated with negative nonlinear resistor
5 Domain of strange atractor
6 Concluding remark
References


1. Introduction
2. The conventional transmission method
3. The proposed method for the transmission
4. Simulation results
5. Application
6. Conclusion
References


1. Introduction
2. SCORM and Metadata
3. Designing a New Method for Retrieving Image Content in SCORM LMS
4. Conclusion
References


1. Introduction
2. Related Works
3. Methodology
4. Analysis Result
5. Conclusion
References


1. Introduction
2. Multiple-Output Current Conveyor
3. Circuit configuration using MO-CCIIs , R and C
4. Circuit configuration using MO-CCIIs and C
5. Simulation results
6. Conclusions
References


1. Introduction
2. Bipolar transistor CCVS having HPF characteristic
3. Optical to electrical converter
4. Experimental results
5. Conclusion
Reference


1. Introduction
2. Suggested Risk Analysis Assessment Model
3. Structure of Suggested Model
4. Conclusions
References


1. Introduction
2. The Volterra Model
3. The NARX Model
4. Experiment and Results
5. Conclusion
References


1. Introduction
2. System of AM-Detector
3. Design Specification
4. Defect of Previously Proposed Amplifier
5. Proposed Front Amplifier
6. Simulation Result
7. Summary
References


1. Introduction
2. Class-E Power Amplifier
3. Simulation Results
4. Conclusion
References


1. Introduction
2. Kansei Factors
3. Estimation of Score Matrix
4. Estimation of Factor Burden Matrix
5. Evaluation
6. Concluding Remarks
References


1. INTRODUCTION
2. ANALYSIS OF THE PROPOSED STRUCTURE
3. CONCLUSION 2001
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Memory Addressing Modes
3. Memory Allocation Method
4. Results
5. Conclusion
References


1. Introduction
2. CC-NUMA protocol of PDLS system
3. Processor Interface for Intel SHV
4. Conclusions
References


1. Introduction
2. Definitions and notations
3. Error detection algorithm
4. Error detection failure probability
5. Circuit realization
6. Conclusion
References


1. Introduction
2. FEC for CATV Down Stream
3. Result of Simulation
4. Problems and Solutions of Implementation
5. Implementation
6. Conclusion
References


1. Introduction
2. Capacitance Model
3. Capacitance of Each Region
4. Evaluation of Expressions
5. Conclusions
References


1. Introduction
2. An Educational Microprocessor and its Teaching Materials
3. Implementation Results
4. Conclusion
References


1. Introduction
2. Cross Layer system
3. H-ARQ system using cross layer coding methods
4. Throughput Analysis
5. Simulation Results
6. Conclusion
References


¥°. INTRODUCTION
¥±. PAPR AND PHASE NOISE PROBLEMS
¥². CI/OFDM SYSTEM AND ANALYSIS
¥³. PROPOSED ACI/OFDM SYSTEM
¥´. SIMULATION RESULTS AND DISCUSSION
¥µ. CONCLUSION
REFERENCES


1. Introduction
2. UViC Architecture
3. MULTI-PROGRAMMING ENVIRONMENT
4. Performance Evaluations
5. Conclusions
References


1. Introduction
2. HT Method (Conventional Method)
3. 2-D RT
4. 2-D FRT Method (Proposed Method)
5. Simulations and Results
6. Conclusion
References


1. INTRODUCTION
2. EQUALIZATION BASED ON CHANNEL REPEATER
3. PERFORMANCE ANALYSIS
References


1. Introduction
2. Definition of Petri nets
3. Modeling wireless sensor network system by Petri nets
4. Applications in practice
5. Conclusions-perspectives
References


1. Introduction
2. Proposed Algorithm
3. Simulation Results
4. Conclusions
References


1. Introduction
2. Detecting the Exterior Boundary of Iris Region
3. Detecting the exterior boundary of iris region
4. Experimental Results
5. Conclusion
Acknowledgement
References


1. Introduction
2. Related Works
3. Proposed Protocol
4. Performance Evaluation
5. Conclusion
References


1. Introduction
2. Encoding and decoding of block turbo codes
3. Block turbo coded OFDM system using channel state information
4. Simulation Results
5. Conclusions
References


1. Introduction
2. Feature Extraction
3. Indexing And Retrieval Strategy
4. Experimental Result
5. Conclusion
6. References


1 Introduction
2 STBC System Based on Coded OFDM System
3 Computer Simulation
4 Conclusion
References


1. Introduction
2. System Model
3. Beamforming Vector
4. Precoding Combined Beamforming
5. Simulation
References


1. Introduction
2. System model
3. Performance analysis
4. Numerical results
5. Conclusion
References


1. Introduction
2. Data Model
3. Cyclic DOA Estimation without Spatial Smoothing and Eigendecomposition
4. DOA Tracking Algorithm for Coherent Cyclostationary Signals
5. Numerical Examples
6. Conclusion
References


1. Introduction
2. Preliminary
3. Information Criteria, MDL
4. Criteria, BML
5. Correct Rate and Bias Term
6. Probability Distribution
7. Conclusions
References


1. Introduction
2. The NAK-based SR-ARQ Protocol
3. Analysis Model for the Transport Delay
4. Results and Discussion
5. Conclusion
References


¥°. INTRODUCTION
¥±. PROPOSED COMPENSATOR
¥². SIMULATION RESULTS
¥³. CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES


1. Introduction
2. Proposed control system
3. The digital PID controller
4. The DC motor system
5. System configuration
6. Conclusion
References


1. Introduction
2. 4-layer channel routing problem
3. Genetic algorithm for 4-layer channel routing
4. Implementation and Analysis
5. Conclusions
References


1. Introduction
2. Proposed Scheme
3. Performance Evaluation
4. Conclusion
References


1. Introduction
2. The IEEE 802.11n MAC
3. The IEEE 802.11n PHY
4. SNR Estimators
5. Iterative SNR for Link Adaptation
6. Performance Evaluation
7. Conclusion
References


1. Introduction
2. Design of 16-bit adiabatic Microprocessor
3. Supply clock generator
4. Simulation results
5. Conclusions
Acknowledgement
References


1. Introduction
2. DWT Core
3. The Quantizer module
4. Simulation Result
5. Conclusion
References


1. Introduction
2. Rake Receiver
3. Proposed Finger Selection Algorithm
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Overview of the CSS
3. Camera Ready Manuscript
4. Simulation Results
5. Conclusion
6. Ackknowlegement
References


1. Introduction
2. Watermark Embedding and Extracting
3. Hardware Implementation
4. Experimental Result
5. Conclusion
ACKNOLEDGEMENT
References


1. Introduction
2. The Thermometer-code Decoder
3. Design of The Latch and Buffer Circuit
4. Design of The Current Source
5. Conclusion
References


1. Introduction
2. Proposed scheme
3. Performance Evaluation
4. Conclusion
References


1. Introduction
2. Evaluation Method
3. Experimental Data
4. Evaluation Result
5. Acknowledgement
REFERENCES


1. Introduction
2. Required Features for HDTV in PVR
3. Architecture and Functions of the Time-Shifter
4. Intelligent Playback Functions
6. Conclusion
References


1. INTRODUCTION
2. MULTIPLIER ARCHITECTURE
3. MULTIPLIER ALGORITHM
4. IMPLEMENTATION
5. RESULT
References


1. Introduction
2. Related Work
3. Analysis of the 802.11i 4-Way Handshake
4. The Proposed solutions
5. Performance and Security Analysis
6. Conclusion
REFERENCES


1. Introduction
2. Maximum Doppler Frequency Estimation
3. Maximum Doppler Frequency Estimation
4. Simulation Results
5. Conclusion
References


1. Introduction
2. The Proposed Common Structures for Spreading and Modulation
3. Implementation Results
4. Conclusions
REFERENCES


1. Introduction
2. Experimental and Results
3. Conclusion
References


1. Introduction
2. Conventional Antenna Diversity Scheme Analysis
3. Dual Antenna Diversity Scheme
4. Simulation Result
5. Conclusion
6. Acknowledgement
REFERENCES


1. Introduction
2. Configuration
3. Experiment and Results
4. Conclusion
References


1. Introduction
2. Delay Calculation
3. Crosstalk Noise Improvement with Buffer Insertion
4. Buffer Insertion
5. Buffer Insertion for Multiple Fan-out Nets
6. Experimental Results
7. Conclusion
References


1. Introduction
2. Programmable FIR Filter Block
3. Multiplier Structure For Low Power FIR Filter
4. Conclusions
Acknowledgement
References


1. Introduction
2. Ground System Structure
3. Design
4. Implementation and Test
5. Concluding Remarks
Acknowledgement
References


¥°. INTRODUCTION
¥±. 2-HOP CLOSED-LOOP MIMO RELAYING
¥². PRECODER SELECTION ALGORITHM
¥³. SIMULATION RESULTS
¥´. CONCLUSIONS
REFERENCES


1. Introduction
2. Embedded SOC Platform for Smart Card
3. Low Power Considerations
4. Experimental Results
4. Conclusions
References


1. Introduction
2. Wave pipelining approach
3. Proposed asynchronous wave-pipelining approach
4. Edge-sensing completion detection circuit
5. Asynchronous wave pipelining adder design
6. Conclusion
Acknowledgement
References


1. Introduction
2. Proposed QPC for Correlated Channel
3. Simulation Results
4. Conclusions
References


1. Introduction
2. Signal Power at ES System
3. Loss Model for ES Detection Range
4. Experimental Results
5. Conclusions
References


1. Introduction
2. FFT algorithm
3. Proposed FFT Processor
4. Conclusion
Acknowledgment.
Reference


1. Introduction
2. AES Rijndael Algorithm
3. VLSI Architecture of AES Rijndael Processor
4. FPGA Implementation and Performance Evaluation
5. Conclusions
Acknowledgements
References


1. Introduction
2. Evaluation method
3. Experimental data
4. Evaluation result
Acknowledgment
References


1. Introduction
2. BOC(m, n) Modulated Spreading Signals
3. The Proposed Scheme: G-ARC
4. Simulation Results
5. Conclusions
Acknowledgement
References


1. Introduction
2. Task Scheduling
3. Graph Partitioning
4. Scheduling Algorithm
5. Experiments
6. Conclusion
References


1. Introduction
2. Modeling Power Distribution Networks
3. Impedance Estimation Method Using Model-Order Reduction
4. Simulation Results
5. Conclusion
References


1. Introduction
2. Initial Channel Estimation on Symbol Averaging
3. Preamble Format of MB-OFDM
4. Proposed Initial Channel Estimation for MB-OFDM UWB
5. Simulation Results
6. Conclusion
Acknowledgement
References


1. Introduction
2. Definition of Kernel Reference Set
3. Algorithm to Find Kernel Reference Set
4. Computational Simulation
5. Concluding Remarks
References


1. Introduction
2. D erivation of maximum crosstalk noise
3. Simulation results and analysis
4. Conclusion
References


1. Introduction
2. Definitions
3. Removing Places Preserving Liveness
4. Computational Complexity of Liveness
5. Conclusion
References


1. Introduction
2. Periodic structure with 3D capacitive coupling
3. A highly miniaturized RF passive component employing periodic structure with 3D capacitive coupling
4. Conclusion
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Operation Principle of the Reconfigurable LNA
3. LNA Design and Performance Results
4. Conclusion
Acknowledgement
References


1. Introduction
2. Preliminary
3. Methodology on Computation of ETI Characteristic Vectors
4. Algorithm to Obtain ETI Characteristic Vectors
5. Concluding Remarks
Acknowledgement
References


1. Introduction
2. Literature Review
3. Petri Net Modeling with Dual Kanban in FMS and FAS
4. Computation of P-invariant
5. Conclusions and Recommendations
References


1. INTRODUCTION
2. ANTENNA DESIGNS
3. EXPERIMENTAL RESULTS
4. CONCLUSIONS
ACKNOWLEDGEMENT
REFERENCES


1. Introduction
2. The new Switch Architecture
3. Electro Optical NoC
4. Conclusion
References


1. Introduction
2. Representation in 3D space
3. Experiment and Result
4. Conclusion
References


1. Introduction
2. System
3. Method
4. Conclusions
References


1. Introduction
2. Principle of FBG Temperature Sensor
3. Numerical Analysis and Results
4. Conclusions
References


1. Introduction
2. Optical ZCZ Codes
3. Optical ZCZ-CDMA system
4. Optical ZCZ Codes for Transmission Channel with Direct Current Interruption Properties
5. Experiment of Free-Space Optical Multiplex Data Transmission of Optical ZCZ-CDMA System
6. Conclusions
Acknowledgements
References


1. Introduction
2. The composition of whole systems
3. Circuit design using power saving methods
4. Design of sensor board and sensing method
5. Design of the sensor-signal processing circuit
6. Design of PC monitoring part
7. Experimental results and Simulation
8. Conclusion
References


1. Introduction.
¥±. The properties of MDFT and SLMS.
¥². The high speed adaptive noise reduction using SLMS.
¥³. Experimental results.
¥´. Conclusion.
References


1. Introduction
2. Modeling of the PMR Channel
3. Description of Systems
4. Description of this Simulation
5. Simulation Result
6. Conclusion
References


1. Introduction
2. Proposed Methods
3. Conditions of the Study of Performances On a Wireless-Controlled Robot
4. Experimental Results
5. Conclusion
6. Acknowledgements
References


1. Introduction
2. LMS-based Adaptive Compensation of the LDV Vibration
3. Implementation of an experimental LDV system and tests
4. Conclusion
References


1. Introduction
2. Problem Formulation
3. Optimal Error Feedback Coefficients
4. A Numerical Example
5. Conclusion
6. Acknowledgement
References


1. Introduction
2. Overview of CDMA-QAM method
3. Application to railway signaling and evaluation using computer simulation
4. Hardware development of CDMA-QAM transceiver using DSPs
5. Field experiment using a rail
6. Conclusion
Acknowledgments
References


1. Introduction
2. VLBI Observations
3. Current Japanese Activities
4. Other VLBI activities in East Asia
5. Conclusion
References


1. Introduction
2. Ideal Lowpass Filter
3. Spline Transition Function Analysis
4. Integral Squared Error Approximation Criterion
5. Simulation Result
6. Conclusion
References


1. Introduction
2. Theories
3. Design and Implementation
4. Experimental results
5. Conclusion
References


¥°. INTRODUCTION
¥±. RECENT IT DEVELOPMENTS IN KOREA
¥². CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


1. Introduction
2. Outline of IT-based Bridge Health Monitoring System
3. CompactRIO(cRIO) & LabVIEW based Data Collecting System
4. Concluding Remarks
References


1. Introduction
2. Logarithmic Numbering System
3. LNS-FIR Filter Structure
4. Hardware Architecture
5. Synthesis and Experimental results
6. Conclusions
References


1. Introduction
2. Strong law of Large numbers
3.Discrete random variable
4.Continuous random distribution
5.Results of the simulation experiment
References


1. Introduction
2. Hybrid Camera System
3. Mulit-view Depth Map Generation
4. Experimental Results
5. Conclusions
Acknowledgement
References


1. Introduction
2. Model
3. Bounded Model Checking
4. Experimental Results
5. Conclusions
References


1. Introduction
2. Background
3. The Sorted-Hypercube Dimensional Exchange Model
4. Experimental Results
5. Conclusion
References


1. Introduction
2. Random Generate Method
3. Rening RG Method
4. Concluding Remarks
References


1. Introduction
2. Designs and Construction
3. Results of Observations
References


1. Introduction
2. Theory
3. Numerical Results
4. Coclusion
References


1. Introduction
2. Influence of the ionosphere on the phase of radio signals
3. Distortions of the output response of the optimal system processing PRA
4. Conclusion
References


1.Introduction
2.Inverse Scattering Measurement System
3.Calibration and measured results
4.Discussions and conclusions
Acknowledgment
References


1. Introduction
2. Impedance Characteristic Analysis for PDN System Design
3. Proposed Design Method
4. Example and Discussion
Conclusions
Acknowledgments
References


1. INTRODUCTION
2. ARCHITECTURE
1. MULTI-PHASE SAMPLING CLOCK GENERATION
2. DATA RECOVERY ALGORITHM
3. CIRCUIT IMPLEMENTATION AND EXPERIMENTAL RESULTS
4. SUMMARY
Acknowledgement
Reference


1. Introduction
2. Modulation Scheme and System Configuration
3. Numerical and Simulated Results
4. Conclusion
References


1. Introduction
2. Experimental set up
3. Result and discussion
4. Conclusion
References


1. Introduction
2. Conventional Smart Card System
3. Soft masking Smart Card System
4. Test Result
5. Conclusion and Future Works
References


1. Introduction
2. Steganography
3. StegoWaveK System
4. Performance Evaluation of StegoWaveK
5. Conclusion
References


1. Introduction
2. Preliminaries
3. The Proposed Strategy
4. Simulation Study
5. Conclusions
References


1. Introduction
2. Related Works
3. P2P based Workflow System
4. Comparisons of the Centralized Workflow
5. Conclusion and future research
References


1. Introduction
2. Multi-view Image Display System for Immersive Sense
3. Interlacing Format for 3D Representation
4. Conclusion
References


1. Introduction
2. Security Services and Authentication
3. Dual Authentication for Secure Transaction
4. Conclusion
References


1. Introduction
2. Relate Work
3. Application of Components of Modified C2 Style Architecture with Message Central Processing
4. Application Example
5. Comparison and Evaluation
6. Conclusion
References


1. Introduction
2. Ubiquitous Computing
3. Control System
4. Performance Evaluation
5. Conclusion
Acknowledgements
References


1. Introduction
2. Mobile IP Low Latency Handoffs
3. A Session Key Reuse Method
4. Security Analysis
5. Experimental Results
6. Conclusion
References


1. Introduction
2. Graph Problems
3. State Transition Model
4. Concluding Remarks
5. Future Work
References


1. Introduction
2. Watermarked Texture Generation
3. Watermark Detection
4. Experimental Results and Discussion
5. Conclusions
References


1. Introduction
2. Various methods
3. DNA-HRAM
4. Construction experiment
5. Check of behavior
6. Conclusion
References


1. Introduction
2. The Principle of Biacore
3. Material and Methods
4. Experimental Results
5. Discussion
6. Conclusion
References


1. Introduction
2. Related Works
3. Differentiated-Admission Control Based on Client Class
4. Experiment and Analysis
5. Conclusion
References


1. Introduction
2.ADSL system crosstalk analysis Model
3. Simulator development and an inspection
4. ADSL transmission performance analysis
5. Conclusion
References


1. Introduction
2. Overview of DoS attacks
3. System Architecture
4. Conclusion
References


1. Introduction
2. Related Research for Application Layer Gateway
3. Characteristics of ALG
4. ALG For FTP Service
5. Conclusion
References


1. Introduction
2. Related Works
3. Proposed Index
4. Structural Retrieval Strategies
5. Experimental Results
6. Conclusion
References


1. Introduction
2. Related Works
3. Structural Information Model
4. XLink Information Table
5. Prototype System Overview
6. Conclusion
References


1. INTRODUCTION
2. RELATED WORKS
3. ARCHITECTURE AND IMPLEMENTATION
4. AN IMPROVED DIRECT ADJUSTMENT ALGORITHM (DAA+)
5. SIMULATION
6. CONCLUSION
Acknowledgements
References


1. Introduction
2. The Design of AAA Client System
3. The Implementation of AAA Client System
4. Conclusions
References


1. Introduction
2. Related Research
3. Implementation
4. Test and Performance Analysis
5. Conclusion and Future Works
References


1. Introduction
2. Overall System
3. NVR Authoring Tool
4. NVR Pilot System
5. 3D Shopping Mall System
6. Conclusion
References


1. Introduction
2. Notations and Assumptions
3. A New Session Key Agreement Scheme
4. Security Analysis
5. Conclusion
References


1. Introduction
2. Lane extraction
3. Band extraction and analysis
4. Experimental results and analysis
5. Conclusion
Reference


¥°. Introduction
¥±. The controlled impedance on the PCB
¥±. The coupon design
¥². The measurement tool design
¥³. Conclusion
Conference


1. Introduction
2. The CLDC Class Library
3. Characteristic of the CLDC Class Library
4. Conclusion
References


1. Introduction
2. Object-Oriented Operating System Design
3. Aspect-Oriented Framework
5. Conclusion
References


1. Introduction
2. Hardware Development and Equipments
3. Software Structure
4. Cooperative Strategy
5. Conclusion
References


1. Weather Report and Forecasts
2. Natural Language Generation
3. Methodology
4. Concluding Remarks
References


1. Introduction
2. Related Work
3. Processing Queries by Predicate-Argument Extraction
4. Concluding remarks
References


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2 Design of a digital 120Mb/s MIMOOFDMWLAN baseband processor
3 Performance Analysis Results
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5 Conclusions
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4. PERFORMANCE EVALUATION
5. CONCLUSIONS
REFERENCES




1 Introduction
2 Montgomery Modular Multiplicationbased on RNS
3 Experimental Result
4 Conclusions
References




1 Introduction
2 Scalar Multiplication Algorithm basedon Montgomery Ladder
3 High Performance GF(2191) EllipticCurve Processor
4 Performance Evaluations
5 Conclusions
Acknowledgement
References


1 Introduction
2 LDPC Decoder Architecture
3 Scheduling By Permutation
4 Experimental Results
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References




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References


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REFERENCES




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3 Simulation Results
4 Conclusions
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References


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¥°. INTRODUCTION
¥±. CONVENTIONAL FLIP-FLOPS
¥². PROPOSED FLIP-FLOPS DESIGN
¥³. SIMULATION CONDITIONS AND TESTBENCH
¥´. SIMULATION RESULTS
¥µ. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


1 ¼­·Ð
2 QCA ¼³°è »óÀÇ ¼ûÀº ÀâÀ½ °æ·Î
3 ALU ºñÆ® ±¸Á¶ »ç·Ê ¿¬±¸
4 °á·Ð
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1 Introduction
2 New Input Vector Control (NIVC) for Minimal Leakage Current
3 Experimental Results
4 Conclusions
References


1 Introduction
2 Genetic Algorithm
3 Experimental Result
4 Conclusions
Acknowledgement
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1. ¼­·Ð
2. ¹è¼± ÆÄ¶ó¹ÌÅÍÀÇ °è»ê
3. TWA Technique
4. °¡»óÁ÷¼± ¹è¼±À¸·ÎÀÇ º¯È¯
5. Analytical Waveform Model
6. ¹è¼± ¸ðµ¨ÀÇ °ËÁõ
7. °á·Ð
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1 Introduction
2 Basic Theory
3 Result and discussion
4 Conclusions
Âü°í¹®Çå


1 Intorduction
2 Design of Charge pump PLL
3 ½Ã¹Ä·¹ÀÌ¼Ç °á°ú
4 °á·Ð
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1 Introduction
2 Architecture
3 Circuit design
4 Simulation results
5 Conclusion
Acknowledgment
References


1 ¼­·Ð
2 ±âÁ¸ 8B/10B ÀÎÄÚ´õ
3 Á¦¾ÈÇÏ´Â 8B/10B ÀÎÄÚµù Å×À̺í
4 Á¦¾ÈÇÏ´Â µð½ºÆÐ¸®Æ¼ ºí·Ï
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6 ±âÁ¸ ÀÎÄÚ´õ¿Í Á¦¾ÈµÈ ±¸Á¶ÀÇ ºñ±³
7 °á·Ð
Acknowledgment
References




1 Introduction
2 Optical printed circuit board
3 Regulated cascode input stage
4 Cross coupled TIA
5 Limiting amplifier
6 Simulation & implementation
7 Conclusion
Acknowledgment
References




1 Introduction
2 Duty Cycle Distortion in Burstmode Optical Receiver
3 Gated Oscillator Based CDR
4 Phase-Interpolating CDR
5 Simulation Result
6 Chip Layout
7 Conclusions
Acknowlegdement
References


1 Introduction
2 Equalizer Structure
3 Simulation Result and Conclusions
Acknowledgment
References




1 Introduction
2 Channel Modeling
3 Architecture of Adaptive Equalizer
4 Circuit Descriptions
5 HSPICE Simulation Results
6 Conclusion
Acknowlegements
References


1 Introduction
2 Channel Modeling
3 Architecture of Pulse Shaping Filter
4 Circuit Description
5 HSPICE Simulation Results
6 Conclusions
Acknowlegements
References



1 ¼­·Ð
2 PCI 2.2 °³¿ä
3 PCI 2.2 ÄÁÆ®·Ñ·¯ÀÇ ¼³°è ¹× °ËÁõ
4 ½ÇÇè°á°ú
References




1 Introduction
2 Definitions and Fault Models
3 Analysis of Test Patterns for Crosstalk Fault
4. Efficient 4n+1 Algorithm for Realistic Crosstalk Faults
4 BIST Implementation of 4n+1 Algorithm
5 Conclusions
References


1 ¼­·Ð
2 °ËÁõ¿¡ ÀûÇÕÇÑ CAN Controller
3 ±âÁ¸ °ËÁõ¹æ¹ý
4 Á¦¾ÈµÈ °ËÁõ±â¹ý ¹× ½ÇÇè
5 °á·Ð ¹× ÇâÈÄ °úÁ¦
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1 Introduction
2 Preliminary
3 The Proposed Method
4. Experimental Results
5 Conclusions
Reference


1 ¼­·Ð
2 Á¦¾ÈÇÏ´Â ¾ÐÃà ¾Ë°í¸®Áò
3 Á¦¾ÈÇÏ´Â ¾ÐÃàÇ®±â Çϵå¿þ¾î
4 ½ÇÇè°á°ú
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2 È¿À²ÀûÀÎ BIST ±¸Á¶ Á¦½Ã
3 °á·Ð
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2. Proposed Idea
3. Test Methods
4. Conclusions
References


1 Introduction
2 IEEE 1149.1 °ú P1500
3 IEEE 1149.1 °ú P1500
4 At-speed Interconnect Test Controller
5 °ËÁõ °á°ú ¹× ±âÁ¸¿¬±¸¿ÍÀÇ ºñ±³
6 °á·Ð
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1. Introduction
2. Distribution of Random Pattern Transitions
3. Decision to set k-value and TMW size
4. Additional Logic Block for the Proposed Scheme
5. Results
6. Conclusions
7. References


1 Introduction
2 Previous Matching Algorithms
3 The Proposed Matching Algorithm
4 Experimental Results
5 Conclusions
References



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2 CABAC ÀÇ ºÐ¼®
3 º¹È£È­ ¹æ½Ä
4 º¹È£±âÀÇ ±¸Á¶
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2 Wavelet and CSF
3 Experiment Process
4 Experimental Result
5 Conclusions
References


1. Introduction
2 Hardware Design
3. FPGA ³»ºÎ Logic ºí·Ïµµ
4. Experimental Result
5. Conclusions
references




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2 JPEG decoder ÀÇ ±¸Á¶
3 Á¦¾ÈµÈ ±¸Á¶ ¹× ¼³°è
4 ±¸Çö ¹× °ËÁõ
5 °á·Ð
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1. Introduction
2. Whole Logic Block Diagram
3. Whole Logic States Diagram
4. Detail Block
5. ½ÇÇè ¹× °á°ú
6. °á·Ð ¹× ÇâÈÄ ¿¬±¸ ¹æÇâ
References



1 ¼­·Ð
2 On-Chip Bus
3 On-Chip Bus ¸ðµ¨¸µ
4 ½Ã¹Ä·¹ÀÌ¼Ç ¹× °á°ú
5 °á·Ð
References




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2. iPROVEÀÇ °³¿ä
3. Transactor Á¤ÇüÈ­ ¹× ±¸Çö
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5. °á·Ð
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2 ¸®ÇÁÆÃ ±â¹Ý 2D DWT ȸ·Î ±¸Á¶
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References




1 ¼­·Ð
2 MDCT/IMDCT
3 eXCite ¸¦ ÀÌ¿ëÇÑ MDCT/IMDCT ¼³°è MDCT/IMDCT
4 ½ÇÇè°á°ú
5 °á·Ð
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2 Related works
3 Proposed architecture
4 Simulation Results and Comparison
5 Conclusions
References


1 ¼­·Ð
2 ÀÌÀü ¹æ¹ý
3 MBT (Multi-prefix Binary Tree)
4 Çϵå¿þ¾î ±¸Á¶
5 Conclusions
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1 Introduction
2 The Reinforcement in Original AntNet
3 Implementation Issues
4 The Proposed Algorithm
5 Simulation Results
6 Conclusions
References


1 ¼­·Ð
2 º»·Ð
3 °á·Ð
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2. Basic Structures of PoRAM Unit Cell
3. Sensing scheme of PoRAM
4. Design of S/A and W/E Driver
5. °á·Ð


1. INTRODUCTION
2. IMPLEMENTED MEMORY CONTROLLER
3. IMPLEMENTATION RESULTS AND PERFORMANCE COMPARISONS
4. CONCLUSIONS
REFERENCES




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2 Electrical Fuse Repair Scheme
3 Device Performance
4 Conclusions
References


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2 Related works
3 Proposed Scheme
4 Simulation results and comparison
Reference




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2 DVR ½Ã½ºÅÛÀÇ Æ¯Â¡
3 ¼ÒÇÁÆ®¿þ¾î ±¸Çö
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2 ´Ù¾çÇÑ 3D-Codec ÀÇ ±¸Á¶
3 VSW - DE ÀÇ Á¦¾È ¹× ±¸Çö°ËÁõ
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1 ¼­·Ð
2 JPEG2000 standard overview
3 EBCOT ¼Ò°³
4 Adaptive Bit_plane coder ¼³°è
5 MQ coder ¼³°è
6 Tier-2 ºí·Ï ¼³°è
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2 NMOS/PMOS ½ºÀ§Ä¡
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4 °³¼±µÈ High Voltage Switch
5 Á¦¾ÈµÈ High Voltage Switch
6 ¸ðÀǽÇÇè °á°ú
7 °á·Ð
References


1 ¼­·Ð
2 Á¦¾ÈµÈ AC-DC º¯È¯±â ȸ·Î
3 ¸ðÀǽÇÇè ¹× ÃøÁ¤°á°ú
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4 VDMOSFET ¼³°è
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2 Conventional Charge Pump
3 Proposed Charge Pump
4 Simulation and Measurement Results
5 Conclusions
References




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2. ȸ·Î ¼³°è
3. Simulation °á°ú
4. °á·Ð
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1 ¼­·Ð
2 PLL ±¸Á¶
3 ½Ã¹Ä·¹ÀÌ¼Ç °á°ú
4 °á·Ð
References




1 Introduction
2 Burst-Mode Receiver Front-End
3 Simulation Result
4 Conclusions
Acknowledgment
References


1 ¼­·Ð
2 PLL ȸ·Î ¼³°è
3 °á·Ð
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2 Circuit Design and Implementation
3 Experimental Results
4 Conclusions
Acknowledgment
References




1 Introduction
2 AF(Auto Focus) Driver
3 Test results
4 Conclusions
References


1 ¼­·Ð
2 ¾Æ³¯·Î±× ¼Û¼ö½Å±â ¼³°è
3 ½ÇÇè°á°ú ¹× ·¹À̾ƿô
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¥°. INTRDUCTION
¥±. RECEIVER ARCHITECTURE
¥². LC-TANK VCO AND PHASESHIFTING NETWORK
¥³. EXPERIMENTAL RESULTS
¥´. CONCLUSION
ACKNOWLEDGEMENT
REFERENCES



























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1. ¼­·Ð
2. Á¦ÁÖ 80kV HVDC ½Ã½ºÅÛ µî°¡ ¸ðµ¨¸µ
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ABSTRACT
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ABSTRACT
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ABSTRACT
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ABSTRACT
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3. Á¦¾ÈµÈ µ¥µåŸÀÓ º¸»ó¹æ½Ä
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ABSTRACT
1. ¼­·Ð
2. º»·Ð
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ABSTRACT
1. ¼­·Ð
2. Á¦¾ÈµÈ Æò¸éº¯¾Ð±â ±¸Á¶ ¹× Çü»ó
3. Á¦¾ÈµÈ Æò¸é º¯¾Ð±âÀÇ ¼³°è
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5. ½ÇÇè°á°ú
6. °á·Ð
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¥°. INTRODUCTION
¥±. CIRCUIT CONFIGURATION
¥². OPERATION PRINCIPLE
¥³. CIRCUIT ANALYSIS
¥´. EXPERIMENTAL RESULTS
¥µ. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. PROPOSED INVERTER DESCRIPTION AND OPERATION
¥². DESIGN CONSIDERATION OF THE PROPOSED SOFTSWITCHING INVERTER
¥³. EXPERIMENTAL RESULTS
¥´. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. BUCK DC-DC CONVERTER OPERATION MODEANALYSIS
¥². CALCULATING THE CRITICAL INDUCTANCEBETWEEN THE CCM AND DCM MODES
IV. OUTPUT VOLTAGE RIPPLE
¥´. MAXIMUM OUTPUT VOLTAGE RIPPLE
¥µ. DESIGN CONSIDERATIONS
¥¶. THEORETICAL ANALYSIS
¥·. EXPERIMENTAL AND SIMULATION RESULTS
¥¸. CONCLUSIONS
REFERENCES


¥°. INTRODUCTION
¥±. FAULT ANALYSIS AND PREVIOUS DIAGNOSTICTECHNIQUES
¥². PROPOSED FAULT DIAGNOSTIC METHOD
¥³. SIMULATION AND EXPERIMENT VALIDATION
¥´. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. BASICS OF THE CASCADED MULTILEVEL INVERTERS
¥². PROPOSED SELECTION OF THE DC VOLTAGE SOURCEVALUES
¥³. CHARGE BALANCE CONTROL METHODS FORSYMMETRIC CASCADED MULTILEVEL INVERTERS
¥´. DEVELOPMENT OF THE CHARGE BALANCE CONTROLMETHODS FOR THE PROPOSED ASYMMETRIC MULTILEVELINVERTERS
¥µ. COMPARISON OF THE PROPOSED ASYMMETRICMULTILEVEL INVERTERS WITH THE CONVENTIONALTOPOLOGIES
¥¶. SIMULATION AND EXPERIMENTAL RESULTS
¥·. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. PMSM MODEL DESCRIPTION
¥². FUZZY PD SPEED CONTROLLER DESIGN ANDSTABILITY ANALYSIS
¥³. SIMULATION AND EXPERIMENTAL RESULTS
¥´. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. TWO PHASE OPERATION OF WYE-CONNECTED ANDDELTA-CONNECTED MACHINES
¥². DESCRIPTION OF THE INTRODUCED CONTROLTOPOLOGY
¥³. CONTROLLER DESIGN
¥´. SIMULATION MODELS
¥µ. THE MOTOR-DRIVE EXPERIMENTAL SET-UP
¥¶. SIMULATION AND VALIDATING EXPERIMENTALRESULTS- ANAYLASIS AND DISCUSSION
¥·. CONCLUSIONS
REFERENCES


¥°. INTRODUCTION
¥±. TWO PHASE INVERTER
¥². PHASE CURRENT RECONSTRUCTION METHODS
¥³. DEAD-ZONE ANALYSIS
¥´. SIMULATION
¥µ. EXPERIMENTS
¥¶. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. OVERMODULATION METHOD
¥². MODELING AND CONTROL OF INDUCTION MACHINES
¥³. CONTROL MODE CHANGE BETWEEN VECTORCONTROL AND V/F SCHEME IN THE OVM RANGE
¥´. EXPERIMENTAL RESULTS
¥µ. CONCLUSIONS
REFERENCES


¥°. INTRODUCTION
¥±. ACO ALGORITHM EVALUATION
¥². PROBLEM STATEMENT
¥³. ENHANCED METHOD
¥´. IMPLEMENTATION OF THE NEW METHOD IN ROTORPOSITION ESTIMATION
¥µ. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. MATHEMATICAL MODELING FOR MRAS
¥². PARAMETER ESTIMATION
¥³. DYNAMIC SIMULATION
¥´. EXPERIMENTAL RESULTS
¥µ. CONCLUSIONS
REFERENCES


¥°. INTRODUCTION
¥±. THE PROPOSED PARALLEL STRUCTURE FOR RPPTSYSTEMS
¥². OPERATING MODES OF THE PARALLEL STRUCTURE
¥³. CONTROL SCHEME OF PROPOSED PARALLELSTRUCTURE
¥´. SIMULATION RESULTS
¥µ. EXPERIMENTAL RESULT
¥¶. CONCLUSION
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. PROPOSED TOPOLOGY
¥². CONTROL PRINCIPLE
¥³. REALIZATION OF THE PROPOSED STRATEGY
¥´. LOSSES ANALYSIS AND COMPARISON
¥µ. SIMULATION AND EXPERIMENTAL RESULTS
¥¶. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES


¥°. INTRODUCTION
¥±. SYSTEM UNDER STUDY, SSSC AND STATCOMMODELS
¥². ANALYTICAL ANALYSIS
¥³. SIMULATION RESULTS
¥´. CONCLUSIONS
APPENDIX
REFERENCES


¥°. INTRODUCTION
¥±. VOLTAGE SAG DETECTION TECHNIQUES
¥². DEVELOPMENT OF CONTROL SCHEME
¥³. VOLTAGE SAG COMPENSATOR
¥´. SIMULATION
¥µ. VALIDATION
¥¶. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. EFFECT OF DIFFERENT PASSIVE FILTERS ON THESTATCOM SYSTEM CHARACTERISTICS
¥². DESIGN OF THE INPUT FILTER
¥³. EXPERIMENTAL RESULTS
¥´. CONCLUSIONS
REFERENCES


¥°. INTRODUCTION
¥±. SHUNT ACTIVE FILTER CONFIGURATION
¥². INSTANTANEOUS ACTIVE AND REACTIVE CURRENT(Id -Iq) THEORY
¥³. CONSTRUCTION OF THE PI CONTROLLER
¥´. CONSTRUCTION OF FUZZY CONTROLLER
¥µ. SYSTEM PERFORMANCE
¥¶. CONCLUSION
REFERENCES


¥°. INTRODUCTION
¥±. RBFNN ALGORITHM
¥². METHODOLOGY
¥³. SIMULATION RESULTS
¥´. CONCLUSIONS
APPENDIX ¥°
REFERENCES


¥°. INTRODUCTION
¥±. COMPENSATION PRINCIPLE OF ICC METHOD
¥². THE PROPOSED ICC SCHEME
¥³. THE CONVENTIONAL DCC SCHEME
¥´. OPERATION AND MODEL OF A SAPF
¥µ. EXPERIMENTAL SETUP AND RESULTS
¥¶. CONCLUSION
REFERENCES
































































































































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¥°. ¼­·Ð
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¥³. °á·Ð
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¥±. Characteristics of Korean Syllable Phonology
¥². Exploration of Constraint Hierarchy for EnglishLoan words in Korean
¥³. Constraint Hierarchy of (22) and Pure KoreanData of (5)
¥´. Conclusion
NOTES
Works Cited
Abstract


2. Literature Reviews
3. Methods
¥³. FINDINGS
5. Conclusion
Work Cited
Abstract


Abstract


¥±. LITERATURE REVIEW
¥². METHODS
¥³. DISCUSSION
¥´. CONCLUSION AND IMPLICATIONS
Works Cited
Abstract
APPENDIX

















¥±. °ø±³À°¿¡¼­ Á¾±³±³À°ÀÇ °úÁ¦
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Abstract


¥±. °³½Å±³ Á¾¸³Çб³ÀÇ ¼±±³Àû »ç¸íÀÇ Èñ»ý
¥². °³½Å±³ Çб³ÀÇ Á¾±³±³À°ÀÇ º»Áú
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¥±. °¡Å縯 Çб³ Á¾±³±³À°
¥². Á¾±³±³À°ÀÇ °ø±³À°Àû ¸Æ¶ô: 2009 °³Á¤ ±³À°°úÁ¤
¥³. 2009 °³Á¤ ±³À°°úÁ¤¿¡ µû¸¥ °¡Å縯 Çб³ Á¾±³±³À°ÀÇ ½Çõ ¹æÇâ
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Abstract


¥±. Ä¿¹Â´ÏÄÉÀÌ¼Ç ¸Åü·Î¼­ÀÇ ¼Ò¼È¹Ìµð¾î ÀÌÇØ
¥². ¼Ò¼È¹Ìµð¾îÀÇ ±âµ¶±³±³À°Àû Ȱ¿ë °¡´É¼º
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¥±. Æ÷½ºÆ®¸ð´õ´ÏÁò°ú ¹®È­ÄÜÅÙÃ÷ÀÇ Á¶¿ì
¥². Á¾±³±³À°°ú ¼­»çÀû À̾߱â
¥³. Á¾±³±³À°°ú ¹®È­ÄÜÅÙÃ÷
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Abstract


¥±. ¼ºÇ°ÀÇ ÀÇ¹Ì¿Í Çʿ伺
¥². Á¦ÀÚÁ÷°ú ½Ã¹ÎÁ÷À» À§ÇÑ ¼ºÇ°±³À° ¿¬±¸
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Abstract


¥±. ±âµ¶±³ ¾çÀ°°ü(Bushnell)
¥². »çȸȭ ±³À°(Coe)
¥³. ȸÁß±³À°(Nelson & Westerhoff)
¥´. °øµ¿Ã¼ ±³À°¹æ¹ý(Foster)
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Abstract


¥±. ¿©¼º¸®´õÀÇ Á¤Ã¼¼º Çü¼º
¥². ¿©¼º¸®´õÀÇ ¿ª·® °­È­
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Abstract


¥±. ÀÌ·ÐÀû ¹è°æ
¥². ¿¬±¸¹æ¹ý
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¥±. ¹®È­¿Í Çϳª´Ô °³³ä
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¥³. ¿¬±¸ °á°ú ¹× ÇØ¼®
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¥°. ¸Ó¸®¸»
¥±. Á÷¹°ÀÇ Á¾·ùº° Ư¼º
¥². ¹Ù´ÀÁú±â¹ýÀ¸·Î »ìÆìº» Ư¼º
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ì顢Ρ?ãþÙÕͯìÑø¥ÓãÑÑ??ù¡îÜÚÅáÔ??
죡¢ÙÕͯðéÑÑ??ù¡îÜð¤íÂî§Öù
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Á¦3Àå ¼öÀÇ ¼±È£µµ Á¶»ç ¹× ¼öÀÇ ¾È Á¦½Ã
Á¦4Àå °á·Ð
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¥°. ¼­·Ð
¥±. ÀÌ·ÐÀû ¹è°æ
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¥³. ÀÛǰ Á¦ÀÛ °á°ú ¹× ÇØ¼³
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¥°. ¼­·Ð
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II. Á¦3ºÐ°ú °³Á¤½Ã¾ÈÀÇ ¼öÁ¤¾Èµé¿¡ ´ëÇÑ Àç°ËÅä
III. ¸ÎÀ½¸»
Âü°íÀÚ·á
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II. ±Ç¸®Çà»ç±â°£¿¡ °üÇÑ ¹ý¸®ÀÇ ºñ±³¹ýÀû °íÂû
III. ±Ç¸®Çà»ç±â°£¿¡ °üÇÑ °¢·ÐÀû °íÂû
IV. Á¦Ã´±â°£¿¡ °üÇÑ ÀïÁ¡
V. °á·Ð
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Abstract


II. ½ÃÈ¿ÀÇ Áß´Ü¡¤Á¤Áö¿¡ °üÇÑ ÃÖ±ÙÀÇ ÀÔ¹ý°æÇâ
III. 2010³â ¹Î¹ý°³Á¤¾È»ó ¼Ò¸ê½ÃÈ¿ÀÇ Á¤Áö, ¿Ï¼ºÀ¯¿¹ ¹× Àç°³½Ã »çÀ¯
IV. 2010³â ¹Î¹ý°³Á¤¾È»ó Ãëµæ½ÃÈ¿ÀÇ Á¤Áö, ¿Ï¼ºÀ¯¿¹ ¹× Áß´Ü»çÀ¯
V. ¸ÎÀ½¸»
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II. °³Á¤½Ã¾ÈÀÇ ÀԾȰæ°ú¿Í ÁÖ¿ä³»¿ë
III. °³Á¤½Ã¾ÈÀÇ ÁÖ¿ä³»¿ë°ú °³Á¤ÀÌÀ¯
IV. °á¾î
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Abstract
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II. ÀÔ¹ý³íÀÇ¿¡¼­ ³ªÅ¸³­ Âù¹Ý °ßÇØ¿Í µµÀÔ¾È
III. Á¦µµ µµÀÔ È¿°ú¿¡ ´ëÇÑ Àǹ®°ú °ËÅä
IV. °á·Ð
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Abstract


II. Àç´Ü¹ýÀμ³¸³ÇàÀ§ÀÇ ÀÇÀÇ
III. Àç´Ü¹ýÀμ³¸³ÇàÀ§ÀÇ ±¸Á¶
IV. Àç´Ü¹ýÀμ³¸³ÇàÀ§ÀÇ ¿ä°Ç
V. Àç´Ü¹ýÀμ³¸³ÇàÀ§ÀÇ ¹ýÀû¼ºÁú
VI. Àç´Ü¹ýÀμ³¸³ÇàÀ§¿Í Çã°¡, ¼³¸³µ¿±â¿ÍÀÇ °ü°è
VII. ³ª¿À¸ç
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Zusammenfassung


II. Âø¿À°¡ °í·ÁµÇ±â À§ÇÑ ¿ä°Ç
III. ±¸Ã¼ÀûÀÎ À¯ÇüÀÇ Âø¿ÀÀÇ Ãë±Þ
IV. °í·ÁµÇ´Â Âø¿ÀÀÇ È¿°ú
V. °á¾î
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Resume


II. ºñ±³¹ýÀû °ËÅä
III. ÀÌÇàû±¸±ÇÀÇ ½ÇÇö ºÒ´É »çÀ¯
IV. ÀÌÇàû±¸±Ç¿¡ °üÇÑ ¹Î¹ý°³Á¤¹æÇâ
V. °á·Ð
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Abstract


II. °è¾àü°á»óÀÇ °ú½ÇÃ¥ÀÓÀÇ ¹ýÀû ¼ºÁú°ú ±Ù°Å
III. °è¾àü°á»óÀÇ °ú½ÇÃ¥ÀÓÀÇ ¿ä°Ç°ú È¿°ú
IV. °è¾àü°á»óÀÇ °ú½ÇÃ¥ÀÓ ¹ý¸®ÀÇ Àû¿ë °ËÅä
V. ¸Î´Â ¸»
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Abstract


II. °è¾àÀÇ ËÇïÒ¿¡ ´ëÇÑ ÀÔ¹ýÀû ŵµ
III. »çÁ¤º¯°æ¹ý¸®ÀÇ ±Ô¹ü¼º : °è¾à³»¿ë°³Á¤±Ô¹ü°ú Àç±³¼·Àǹ«
IV. °³Á¤Ã»±¸±Ç°ú Àç±³¼·
V. °è¾àÀÇ »ç¹ýÀû °³Á¤
VII. ¸Î´Â¸»
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Abstract


II. ¹Ì±¹¿¡¼­ÀÇ »ç¸Á ÈÄ ÆÛºí¸®½ÃƼ±Ç¿¡ ÀÇÇÑ º¸È£
III. µ¶ÀÏ¿¡¼­ÀÇ »ç¸Á ÈÄ Àΰݱǿ¡ ÀÇÇÑ º¸È£
IV. ¿ì¸®³ª¶óÀÇ »ç¸ÁÀÚÀÇ µ¿Àϼº º¸È£
V. °á·Ð
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Abstract


II. µ¿ÀÇÀÇ ¹ýÀû ¼º°Ý
III. µ¿ÀÇ´É·Â
IV. °á·Ð
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Zusammenfassung


II. ÀÔ¾çÃËÁøÆ¯·Ê¹ý»ó À͸íÀÔ¾ç Á¦µµ
III. ¿µ¹Ì¹ý»ó À͸íÀÔ¾ç Á¦µµ
IV. À͸íÀÔ¾ç Á¦µµÀÇ ¹®Á¦Á¡
V. ³ª¿À¸é¼­ : ´ëÀÀ¹æ¾È
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Abstract


II. Àç´Ü¹ýÀÇ ±âÃÊ
III. ¹Î¹ý Á¦61Á¶¿Í Á¦65Á¶
IV. ³»ºÎÃ¥ÀÓÀÇ ¿ä°Ç
V. Ã¥ÀÓÀÇ ¹èÁ¦ ¶Ç´Â °æ°¨
VI. û±¸±ÇÀÇ ½ÇÇö
VII. ³ª¿À¸ç
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Zusammenfassung


II. ¹®Á¦ÀÇ Á¦±â
III. ÆÇ·Ê¿¡ µû¸¥ ÀÇ»çÀÇ °³³äÁ¤ÀÇ
IV. ´ë»óÆÇ°á¿¡ÀÇ Àû¿ë
V. °á·Ð
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Abstract


»ó°íÀÌÀ¯ÀÇ ¿äÁö
I. ¹®Á¦ÀÇ Á¦±â
II. ß²íºÊà ÔôÑÀÙ£ëùãáöþ¿¡¼­ ¸ÅµµÀÎÀÌ ¼±ÀÇÀÎ °æ¿ìÀÇ ¹ý·ü°ü°è
III. 3´ç»çÀÚ »çÀÌÀÇ Á¡À¯ ³»Áö´Â µî±â¸íÀÇ ºÎ´çÀ̵æ°ú ¹°±ÇÀû û±¸±Ç°úÀÇ °ü°è
IV. Á¡À¯ ³»Áö µî±â¸íÀÇÀÇ ºÎ´çÀ̵æÀÇ ¹ýÀû ¼º°Ý
V. ºÎ´çÀ̵æÀÇ »ï°¢°ü°è¿¡ °üÇÑ ÇØ¼®·ÐÀÌ µî±â¸íÀÇÀÇ ºÎ´çÀ̵濡µµ ±×´ë·Î Àû¿ëµÉ ¼ö Àִ°¡?
VI. °á·Ð
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Zusammenfassung


II. °øÅëÀÇ Âø¿ÀÀÇ °³³ä
III. Á¾·¡ÀÇ ³íÀÇ
IV. È¿À²ÀÇ °üÁ¡¿¡¼­ º» °øÅëÀÇ Âø¿À
V. ÇØ¼®·ÐÀû °ËÅä
VI. Á¾·¡ ÆÇ·ÊÀÇ Àç°ËÅä
VII. °á·Ð
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Abstract


II. ÀϹݷÐ
III. ¿ä°Ç·Ð-»çÀü ¹èºÐµÇÁö ¾ÊÀº À§Çè¹ß»ý
IV. »çÁ¤º¯°æÀÇ È¿°ú-¹ß»ýÇÑ À§ÇèÀÇ »çÈĹèºÐ
V. °á·Ð
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Abstract


II. ä±Ç¾çµµ¿¡ À־ 乫ÀÚÀÇ ¾ç¼öÀο¡ ´ëÇÑ Ç׺¯½Â°è¿Í Ç׺¯Àý´Ü
III. 乫ÀÚÀÇ Ã¤±Ç¾çµµ¿¡ ´ëÇÑ ¡¸ÀÌÀǸ¦ º¸·ùÇÏÁö ¾ÊÀº ½Â³«¡¹°ú ´ãº¸±ÇÀÇ ºÎȰ
IV. ¸¶Ä¡´Â ±Û
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Abstract


II. ÀÇ·áÇàÀ§ ºÐ¾÷È­ÀÇ ¹Î¡¤Çü»ç Ã¥ÀÓ¹ýÀû °í·Á
III. ¼öÁ÷Àû ÀÇ·áºÐ¾÷°ú ¹Î»çÃ¥ÀÓÀÇ °ü°è
IV. ¼öÆòÀû ÀÇ·áºÐ¾÷°ú ¹Î»çÃ¥ÀÓÀÇ °ü°è
V. ¸Î´Â ¸»
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Zusammenfassung


II. »ç½Ç°ü°è
III. ´ë»óÆÇ°áÀÇ ¿äÁö
IV. ¹¬½ÃÀû ÇÕÀÇ
V. ½ÅÀǼº½ÇÀÇ ¿øÄ¢
VI. ¼ÕÇØÀÇ ¹ß»ý
VII. °á¾î
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Abstract


II. Civil Marriage ActÀÇ ¼º¸³ ¹è°æ°ú °úÁ¤
III. ij³ª´Ù µ¿¼ºÈ¥ Á¦µµÀÇ °ËÅä
IV. µ¿¼ºÄ¿ÇÃÀÇ ¹ý·ü°ü°è¿¡ ´ëÇÑ ¿ì¸®³ª¶óÀÇ ¹ý·üÀû ȯ°æ
V. º¯È­¸¦ ¼ö¿ëÇÏ´Â °¡Á·°ü°è¹ý
VI. °á¾î
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Abstract


II. ÀÔ¹ýÀÇ °æÀ§¿Í ÇöȲ
III. °³¼±¹æ¾ÈÀÇ Á¦¾È
IV. °á¾î-°³Á¤¾ÈÀÇ Á¦½Ã
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Abstract


II. ±¹³»ÀÇ ³íÀÇ
III. ´ë·ú¹ý°èÀÇ ³íÀÇ
IV. ¿µ¹Ì¹ý°èÀÇ ³íÀÇ
V. À¯·´ºÒ¹ýÇàÀ§¹ý ÅëÇÕ¿¡ °üÇÑ ³íÀÇ
VI. ÀÔ¹ý·ÐÀû °íÂû
VII. °á·Ð
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Abstract


II. ´ë»óÆÇ·Ê¿¡ ´ëÇÑ °ËÅä
III. ´ë»óÆÇ°á¿¡ ´ëÇÑ °ËÅä
IV. °á·Ð
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Abstract


II. Á¡À¯ÀÚ-ȸº¹ÀÚ °ü°èÀÇ ±¸Á¶ ºÐ¼®
III. ¿Ü±¹ÀÇ ÀÔ¹ý·Ê
IV. Á¡À¯ÀÚ-ȸº¹ÀÚ °ü°è ±ÔÁ¤°ú ´Ù¸¥ °ü·Ã ±ÔÁ¤ÀÇ ºñ±³
V. Á¡À¯¹°ÀÇ °ú½Ç(Íýãù)ÀÇ Ã³¸®
VI. ºñ¿ëÀÇ »óȯ
VII. °³Á¤½Ã¾È
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Zusammenfassung


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IV. Çм³
V. ´ë»óÆÇ°áÀÇ °ËÅä
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ÆÐ³Î Áú¹® »çÇ× ¹× von Bar ±³¼ö ´äº¯


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3. °¡º¯ ǰÁú ¸ÖƼ¹Ìµð¾î Àç»ý±â
4. ½ÇÇè °á°ú ¹× ºÐ¼®
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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Abstract
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2. ¿¬±¸ µ¿±â
3. ¼³°è
4. ¼º´É Æò°¡
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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1. ¼­·Ð
2. ¿ä±¸»çÇ× ºÐ¼®
3. ÇϵÓÀÇ µ¥ÀÌÅÍ Ã³¸® ¹× ºÐ¼® ±¸Á¶
4. ÇϵÓÀ» ÀÌ¿ëÇÑ Ãµ¹® ÀÀ¿ë µ¥ÀÌÅÍ Ã³¸® ±¸Çö
5. ½ÇÇè ȯ°æ ±¸Ãà ¹× °á°ú ºÐ¼®
6. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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Abstract
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3. Ŭ·¡½ºº° Áö¿¬ ½Ã°£ ¿¹Ãø ±â¹ý
4. ½ÇÇè ¹× ¼º´É Æò°¡
5. °á·Ð ¹× ÇâÈÄ °úÁ¦
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Abstract
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2. °ü·Ã ¿¬±¸
3. µ¿½Ã¹ß»ý ºó¹ß ºÎºÐ±×·¡ÇÁ Ư¡ ±â¹ÝÀÇ ±×·¡ÇÁ ºÐ·ù Æ®¸® ¾Ë°í¸®Áò
4. ¼º´É Æò°¡
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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Abstract
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2. °ü·Ã ¿¬±¸
3. ³»½¬ÁßÀ縦 ÀÌ¿ëÇÑ ºñ°æÀï ±¸°£ ÇÒ´ç¹æ¾È
4. »ç·Ê ºÐ¼®
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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Abstract
1. Introduction
2. Related work
3. Our novel approach
4. Simulation results
5. Conclusion
References


Abstract
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. È®·üÀû °¨¼º ¸ðµ¨
4. ½ÇÇè
5. °á·Ð
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Abstract
1. ¼­·Ð
2. ¼º´É ºÐ¼® ÀÎÀÚ
3. ½ÇÇè ¹æ¹ý
4. ½ÇÇè °á°ú ¹× °íÂû
5. °á·Ð
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Abstract
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2. º»·Ð
3. °á·Ð
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Abstract
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2. °ü·Ã¿¬±¸¿ÍÀÇ ºñ±³
3. È®·üÀû ºÐ¼®À» ÅëÇÑ ºñÁ¤»ó Æ®·¡ÇÈ Å½Áö
4. ½ÇÇè °á°ú
5. °á·Ð ¹× ÇâÈÄ °úÁ¦
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Abstract
1. Introduction
2. Related Work
3. Proposed Person-to-Person Interaction Recognition Model
4. Experimental Results and Analysis
5. Conclusions and Future Research
References


Abstract
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2. °ü·Ã ¿¬±¸
3. Ã౸ ºñµð¿À¿¡¼­ ¾ó±¼ ÀÎ½Ä ±â¹ÝÀÇ ¼±¼ö ½Äº°
4. ½ÇÇè ¹× °á°ú ºÐ¼®
5. °á·Ð
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Abstract
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2. °ü·Ã¿¬±¸
3. ACSRÀ» ÀÌ¿ëÇÑ AUTOSAR ¼ÒÇÁÆ®¿þ¾î ¾ÆÅ°ÅØÃ³ ¸ðµ¨ÀÇ ½Ã°£ ºÐ¼®
4. »ç·Ê¿¬±¸: ÀÚµ¿Â÷ Á¤¼ÓÁÖÇàÀåÄ¡(Car Cruise Control System)
5. Á¤Çü°ËÁõ ¹× °á°ú
6. °á·Ð
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3. Å©·¹µ÷ ±â¹ÝÀÇ ¶ô ÀÎÁö ½ºÄÉÁÙ·¯
4. ½ÇÇè °á°ú
5. °á·Ð
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3. Á¦¾ÈÇÏ´Â °¡»óÈ­ ºÐ»ê ȯ°æ¿¡¼­ÀÇ Àå¾Ö°ü¸® ¹æ¹ý
4. °á·Ð
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2. °ü·Ã ¿¬±¸
3. °í¼º´É RDF °Ë»ö ½Ã½ºÅÛ
4. °á·Ð ¹× ÅäÀÇ
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2. ¸ðÀǽÇÇè
3. ½ÇÇè °á°ú
4. °á·Ð
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2. °ü·Ã ¿¬±¸
3. °¡»ó¸Ó½Å ȯ°æ¿¡¼­ÀÇ Hadoop ½Ã½ºÅÛ ÃÖÀûÈ­¸¦ À§ÇÑ °øÀ¯ ¸Þ¸ð¸® ±¸Á¶ Á¦¾È
4. °á·Ð
5. Âü°í ¹®Çå


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2. Xen ÀÇ RTT(Round Trip Time) °ªÀÇ ºÒ¾ÈÁ¤ ¹®Á¦
3. XenÀÇ ³×Æ®¿öÅ© ±¸Á¶
4. Packet Delay ÀÇ ±ÕµîÈ­
5. °á·Ð ¹× future work
6. ȍȍ(Acknowledgement)
7. Âü°í¹®Çå


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2. °ü·Ã ¿¬±¸
3. À¥ ¼­¹ö ½ºÄÉÀϸµ ÀÚµ¿È­
4. ½ÇÇè
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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1. Introduction
2. Related Work
3. Our Approach
4. Experiments
5. Conclusion
Reference


1. ¼­·Ð
2. °ü·Ã¿¬±¸
3. ±¸Çö
4. °á·Ð
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2. °¡»óÈ­ ½Ã½ºÅÛÀÇ ÀÌÇØ.
3. °¡»óÈ­ ȯ°æ¿¡¼­ I/OºÐ¼®À» À§ÇÑ µµ±¸.
4. ½ÇÇè ¹× °á°ú ºÐ¼®.
5. °á·Ð.
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2. °ü·Ã¿¬±¸
3. RCS Åë½Å ¸ðµâ ¸ðµ¨¸µ
4. °á·Ð ¹× ÇâÈÄ¿¬±¸
5. Âü°í¹®Çå


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2. SRP ¾ÆÅ°ÅØÃ³
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4. ½ÇÇè °á°ú
5. °á·Ð
6. Âü°í ¹®Çå


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2. ARM Cortex-A8°ú NEON ±â¼ú
3. NEON ÃÖÀûÈ­
4. ½ÇÇè ¹× Æò°¡
5. °á·Ð
6. ȍȍ
7. Âü°í ¹®Çå


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2. °ü·Ã¿¬±¸
3. ÀÌÁø-¼øÂ÷ ºÐÇÒÁ¤º¹ ¹æ¹® ¾Ë°í¸®Áò(S-DAC)
4. ¼º´É Æò°¡
5. °á·Ð
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4. ½ÇÇè
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3. »óȲ ÇнÀ ÀÌ·Ð ±â¹ÝÀÇ CPS ±³¼ö ? ÇнÀ °úÁ¤ ¼³°è
4. ±³¼ö ? ÇнÀ °úÁ¤ ±¸Çö
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4. °á·Ð
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4. °üÂû
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8. Âü°í ¹®Çå


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4. Virtual Runtime ±â¹Ý ·Îµå ¹ë·±½Ì
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2. Background
3. TRIM Command Áö¿øÀ» À§ÇÑ È£½ºÆ® ÀÎÅÍÆäÀ̽º ¼³Á¤
4. Experiment
5. Conclusion
6. Acknowledgement
Reference


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6. Âü°í¹®Çå
7. Acknowledgement


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2. °ü·Ã ¿¬±¸
3. ¿ª·® °³¹ß¿¡ ±â¹ÝÇÑ Ä¿¸®¾î ÆÐ½º °ü¸® ½Ã½ºÅÛ ±¸Çö
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5. ½ÇÇè
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2. °ü·Ã¿¬±¸
3. Á¦¾ÈÇÏ´Â °øÀ¯¸Þ¸ð¸®¸¦ ÀÌ¿ëÇÑ º´·Äµ¥ÀÌÅͺ£À̽º ±¸Á¶
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3. VtuneÀ» ÀÌ¿ëÇÑ ERSL ±â¹ý ºÐ¼®
4. OpenMP¸¦ ÀÌ¿ëÇÑ ERSL ±â¹ý º´·ÄÈ­ °á°ú
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1. ¼­·Ð
2. Preliminaries
3. Á¦¾ÈÇÏ´Â ¹æ¹ý
4. ½ÇÇè
5. °á·Ð
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2. °ü·Ã ¿¬±¸
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3. Future Work
4. °á·Ð
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2. °ü·Ã ¿¬±¸
3. Á¦¾ÈÇÏ´Â ¹«°á¼º º¸Àå ±¸Á¶
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1. INTRODUCTION
2. RELATED STUDIES
3. SYSTEM DESIGN
4. SYSTEM IMPLEMENTATION
5. CONCLUSION
REFERENCE


1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. Á¦¾ÈÇÏ´Â ÇÁ·ÎÅäÄÝ
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5. Æò°¡
6. °á·Ð ¹× ÇâÈÄ ¿¬±¸¹æÇâ
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4. ±¸Çö ¹× °á°ú
5. ³íÀÇ ¹× °á·Ð
6. ¾ÕÀ¸·Î ÇÒ ÀÏ
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6. °á·Ð
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Acknowledgment
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2. °ü·Ã ¿¬±¸
3. Context Information-based Application Access Control Model (CIAAC)
4. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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2. °ü·Ã ¿¬±¸
3. ½ºµµÄí¸¦ ÀÌ¿ëÇÑ »õ·Î¿î ¹æ¹ýÀÇ Á¦¾È
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3. Á¦¾È ±â¹ý
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4. Implementation
5. Experiments
6. Conclusion
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2. Related Works
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4. Performance Evaluation
5. Conclusion
Reference


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6. Âü°í ¹®Çå


1. ¼­·Ð
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TOOLS FOR APPROACHING TO PERSONAL FOOD
PERCEPECTIVE FOR PERSONALIZATION
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General Information
Exhibition Information
Author Index



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2. ¡®Ä§¹¬ÇÏ´Â ´Ù¼ö¡¯¿¡ ´ëÇÏ¿©
3. ´ëÁß°ú »çȸÀûÀÎ °ÍÀÇ ½Ã¹Ä¶ó½Ã¿Ë
4. ´ëÁß ¼Ó¿¡¼­ »çȸÀûÀÎ °ÍÀÇ ³»ÆÄ, ¸Åü ¼Ó¿¡¼­ ÀǹÌÀÇ ³»ÆÄ
5. »çȸÀûÀÎ °ÍÀÇ À§±â
6. °á·Ð
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Resume


2. 18¼¼±â ÇÁ¶û½ºÀÇ »ì·Õ°ú »ì·Î´Ï¿¡¸£
3. °è¸ùÁÖÀÇ ½Ã´ë »ì·Õ ¿©¼ºµéÀÇ ±Û¾²±â¿Í Á¤Ã¼¼º
4. °á·Ð : »ì·Õ ¹®È­¿Í »ì·Î´Ï¿¡¸£ÀÇ ÀÇÀÇ¿Í ÇѰè
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2. Ÿ ´ë·úÀÇ ¹®È­¿¡ ´ëÇÑ ¼­±¸ ÀηùÇÐÀÇ ¿¬±¸ ¹× Àü½Ã °üÁ¡ÀÇ º¯È­
3. ÀÚÅ© ½Ã¶óÅ©ÀÇ ¹®È­Á¤Ã¥°ú Äɺê¶û¸® ¹Ú¹°°üÀÇ ¿ª»çÀû À§»ó
4. ÀηùÇаú ¿¹¼úÀÇ °æ°è¸¦ ³Ñ¾î
5. ³ª¿À´Â ¸»
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¥±. »çȸÀû ¹èÁ¦¹®Á¦¿Í ±¹°¡°³ÀÔÀÇ Çʿ伺
¥². ¿¬´ë(solidarite)¿Í ¶óÀ̽ÃÅ×(laicite): ±¹°¡°³ÀÔÁÖÀÇÀÇ À̳äÀû Åä´ëµé
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Âü°í¹®Çå
Resume


¥±. ÀåÅͱØÀÇ ¹®È­³íÀï°ú ¹ýÀû ´ëÀÀ
¥². ¹ÌÇÐÀû ´ëÀÀ°ú ±â¹ý
¥³. ¸Î´Â ±Û
Âü°í¹®Çå
Resume


¥±. °¨°¢Àû Ç¥Çö
¥². º¯ÇüÀÇ ÀǹÌ
¥³. ¸ÎÀ½¸»
Âü°í¹®Çå
Resume


¥±. Å×·¹Áî¿Í ·Î¶û
¥². »ìÀÎ ÈÄ Å×·¹Áî¿Í ·Î¶û
¥³. ¶óÄÐ ºÎÀΰú Ä«¹ÌÀ¯
¥´. ±× ¿ÜÀÇ Àι°µé
¥µ. °á·Ð
Âü°í¹®Çå
Resume


º»·Ð
°á·Ð
Âü°í¹®Çå
Resume


º»·Ð
°á·Ð
Âü°í¹®Çå
Resume


2. ÇÁ¶û½º À¯ÅäÇÇ¾Æ ¹®ÇÐÀÇ ¼±±¸ÀÚµé
3. 18¼¼±â À¯ÅäÇÇ¾Æ ¹®ÇÐÀÇ ¾ç»ó
4. ·ç¼Ò¿Í º£¸£³ª¸£´ó µå ½ß ÇÇ¿¡¸£
5. °á·Ð
6. Âü°í¹®Çå
Resume


2. ¸í»ç¼º Çü¿ë»ç¿Í µ¿»ç¼º Çü¿ë»çÀÇ Á¤ÀÇ
3. ¿¬±¸ ´ë»ó ¾ð¾î
4. ¸í»ç¼º ÃøÁ¤ ±âÁØ
5. ´ë»ó¾ð¾î Çü¿ë»çÀÇ ¸í»ç¼º ±â¼ú
6. ´ë»ó¾ð¾î Çü¿ë»çÀÇ ¸í»ç¼º ÃøÁ¤
7. ¸í»ç¼º ÃøÁ¤ °á°ú
8. °á·Ð
Âü°í¹®Çå
Resume


2. Premices de la traductologie
3. Une science de la traduction ?
4. Place de l¡¯experimentation
Conclusion
Bibliographie
±¹¹®¿ä¾à


¥±. µî°¡¼ºÀÇ c¡¯est-a-dire : Åë»ç-ÀǹÌÀû Á¤ÀÇ
¥². ÀçÇ¥¸íÀÇ c¡¯est-a-dire : ´ãÈ­-È­¿ë·ÐÀû ÁöÀ§
¥³. ´ãÈ­Ç¥Áö c¡¯est-a-direÀÇ ÀçÇØ¼® ±â´É
¥´. °á·Ð
Âü°í¹®Çå
Resume


¥±. Evolution du point de vue sur la traduction dans l¡¯apprentissage d¡¯une langue etrangere
¥². Pour les points de contact avec la traduction professionnelle
¥³. En guise de conclusion
Bibliographie
±¹¹®¿ä¾à



Le magnetisme des abimes


II. °ÅÀΰú °ü·ÃµÈ Å׸¶µé
III. ¹Î°£¼³È­¿Í ¹Ì½ÅÀû ¿ä¼Òµé
IV. ¾Ë·¹°í¸®¿Í dzÀÚ
Reesumee



2. ¸£Æäºê¸£: µµ½Ã¿¡ ´ëÇÑ ±Ç¸®¿Í °ø°£ÀÇ ÀÚº»ÁÖÀÇÀû »ý»ê¹æ½Ä
3. µåº¸¸£, ½ºÆåŸŬ »çȸ¿Í ¼ÒºñÀÚº»ÁÖÀÇ µµ½Ã°ø°£ ºñÆÇ
4. ³ª¿À¸ç


1. ¡®¹ÐÁý(l'entassement)¡¯°ú ºÐ»ê : ÆÄ¸®ÀÇ ¡°ºÎÁ¤ÀûÀÎ Ãø¸é¡±
2. »ç±³°è¿Í ±ØÀå : ÆÄ¸®ÀÇ ¡°¹àÀº Ãø¸é¡±
3. ±â¾ïÀÇ °ø°£, ¸ù»óÀÇ º¸Æø : ¡º°íµ¶ÇÑ »êÃ¥ÀÚÀÇ ¸ù»ó¡»ÀÇ ÆÄ¸®
Bibliographie


º»·Ð 1 : À°Ã¼Àû ÇѰèÀÇ ±Øº¹
º»·Ð 2 : Ãß»óÀÇ ¼¼°è
³ª°¡¸ç : ¹ßÀÚÅ©ÀÇ È¯»ó¼º
Reesumee


2. Le role de Balzac dans l¡¯affermissement du statut de fantastique
3. L¡¯originalite du fantastique balzacien


II. ´ëµµ½Ã ÆÄ¸®¿Í Çö´ë½Ã
III. º¥¾ß¹Î°ú ´ëµµ½Ã ÆÄ¸®
IV. º¥¾ß¹ÎÀÇ º¸µé·¹¸£·Ð



II. º¬ÀÚ¸æ Æä·¹ÀÇ ¡®À§´ëÇÑ ³îÀÌ¡¯¿Í ½ÃÀû ȯ»ó¼º
III. ¸Î´Â ¸»: ÃÊÇö½ÇÁÖÀÇ ½Ã¿Í ¹ÌÇÐ, ȯ»ó¼º
Âü°í¹®Çå
Resume


2. ¿Ü»óÀÇ ÈçÀûÀ¸·Î¼­ÀÇ µµ½Ã
3. ±â¾ïÀ» ´ã´Â µµ½Ã
°á·Ð
Âü°í¹®Çå


2. ÀçÇöÀÇ ¿ª»ç¿Í ȯ»ó
3. Æ÷½ºÆ®¸ð´õ´ÏÁò°ú ȯ»ó
4. ȯ»óÀÇ ¿¬±Ø¼º°ú »çÁø
5. ³ª°¡´Â ±Û
Âü°í¹®Çå
Resume


2) Á×À½
3) ºñ»ç½ÇÀûÀÎ °ÍÀÇ »ç½ÇÁÖÀÇ
Bibliographie
Resume


À§»ý À̵¥¿Ã·Î±â¿Í ÁßÁ¤ ¹× ºí·ÏÀÇ ¿­¸° ü°è
±ÞÁøÀû °èȹ¾È°ú ÀýÃæÀû ½ÇÇà¾È: ÀüÅë µµ½ÃÁ¶Á÷¿¡ ´ëÇÑ ¹®Á¦Á¦±â
±Ù´ëÁÖÀÇ µµ½Ã°èȹ ¿øÄ¢ÀÇ Ä§Åõ¿Í ¡®¿ÀºêÁ¦(objet)¡¯ °ÇÃà
¡®ºí·Ï(ilot)¡¯ÀÇ È¸±Í¿Í ¡®ÀüÅëÀû¡¯ °¡Ä¡ÀÇ ÀçÁ¶¸í
µµ½ÃÁ¶Á÷ÀÇ º¹ÇÕ¼º°ú °ÇÃàÀÇ ´Ù¿øÀû Á¢±Ù : ¡®²Ã¶óÁê ½ÃÆ¼(Collage City)
³ª¿À¸é¼­ : ¡®µµ½Ã¿¡ ¹Ý(Úã)ÇÏ´Â °ÇÃà?¡¯ ¡®µµ½Ã¿Í ÇÔ²²ÇÏ´Â °ÇÃà?¡¯
Âü°í¹®Çå


II. ºûÀÇ µµ½Ã ¸®¿Ë : ¡®ºû¡¯°ú µµ½ÃÀÇ Á¤Ã¼¼º
III. ¹Ìµð¾î¾ÆÆ® µµ½Ã ¸®¿Ë : µµ½Ã Á¤Ã¼¼ºÀÇ ±¸ÇöÀ¸·Î¼­ÀÇ ¹Ìµð¾î¾ÆÆ®
IV. ¡®Áö¼Ó°¡´ÉÇÑ µµ½Ã¡¯¿Í ¡®¹Ù¶÷Á÷ÇÑ µµ½Ã¡¯¸¦ À§ÇÑ ¸®¿ËÀÇ ¼±Åà : ¹Ìµð¾î¾ÆÆ® À¯³×½ºÄÚ Ã¢Àǵµ½Ã
VI. ³ª°¡¸ç
Âü°í¹®Çå ¹× ÀÎÅÍ³Ý »çÀÌÆ®


2. ³í¹®ÀÇ ¿¬±¸ÁÖÁ¦
3. ÀÛǰÀÇ ±¸Á¶ ¹× ±¸¼º ºÐ¼®
4. Ç¥ÇöÇü½ÄµéÀÇ ´Ù¾çÇÑ È°¿ë¹æ½ÄÀ» ÅëÇØ »êÃâÇϴ ȯ»ó¼º
Âü°í¹®Çå
Resume


II. ȯ¿µ°ú ¹Ý¿µÀÇ µµ½Ã
III. À¯¹è¿Í ÇØ¹æÀÇ µµ½Ã
IV. °á·Ð
Âü°í¹®Çå ¹× »çÀÌÆ®


2. 19¼¼±â ÇÁ¶û½º¿Í ÀλóÁÖÀÇ
3. ÀλóÁÖÀÇ ÀÛǰ ¼ºÇâ
4. ÀÛǰ ¼Ó¿¡ ³ªÅ¸³­ ¹®È­»ýȰ ¾ç»ó
5. ¸ÎÀ½¸»
Âü°í¹®Çå


II. °¡½Ã¼¼°èÀÇ ÀçÇö-ȯ¿µÀÇ Åº»ý
III. ºñ°¡½Ã¼ºÀÇ °¡½ÃÈ­-ȯ¿µ¿¡¼­ ȯ»óÀ¸·Î
IV. ¼ø¼ö Á¶Çü°ø°£ÀÇ Åº»ý-ȯ»ó¿¡¼­ Ãß»óÀ¸·Î
V. ³ª°¡´Â ¸»
Âü°í¹®Çå


2. ³»¿ëÀû ¸ðÈ£ÇÔÀÇ È¯»ó È¿°ú
3. ±×·¡ÇÈ °è¿­ ³»ºÎÀÇ ¸ðÈ£ÇÔ
4. ±×·¡ÇÈ °è¿­°ú Æ÷Åä±×·¡ÇÈ °è¿­ »çÀÌÀÇ ¸ðÈ£ÇÔ
5. ±×·¡ÇÈ ¼Ò¼³°ú Æ÷Åä±×·¡ÇÈ ¼Ò¼³, ±× µ¥ÄíÆÄÁÖ¿Í »çÀÌ °ø°£ÀÇ ¸ðÈ£ÇÔ
6. °æ°èÀÇ ¸ðÈ£ÇÔ°ú ȯ»ó È¿°ú
Âü°í¹®Çå
Resume


2. ¸Æ¶ôÀ̶õ ¹«¾ùÀΰ¡?
3. ¹ø¿ª °úÁ¤°ú ¸Æ¶ô
4.1. ¾ð¾îÀû ¸Æ¶ôÀÇ ¹ø¿ª
4.2. ÀÎÁöÀû ¸Æ¶ôÀÇ ¹ø¿ª
4.3. ¼Ò°á
5. °á·Ð


2. Atelier d'architecture
3. Laurent Pereira Godinho Architectural Works by Chae-Pereira Architects


2. Àå°Å¸® Á¾¼Ó°ü°è ¾ç»ó
3. ¼³¸í ¹æ¹ý
4. HPSG ¹®¹ý¿¡¼­ÀÇ ±â¼ú
Âü°í¹®Çå


2. °íÀ¯ ¸í»ç¿Í ÀÏ¹Ý ¸í»ç
3. ¸í»ç±¸ º¸Á·Àý°ú ¸íÁ¦ÀÇ ¼Ó¼ºÀ» ³ªÅ¸³»´Â ÀÏ¹Ý ¸í»ç
4. ³í¸® Àǹ̷аú ¼¼°èÀÇ Ç¥»ó
Âü°í¹®Çå


L¡¯exemple de la phonologie
Bibliographie


BIBLIOGRAPHIE


2. ¿¬±¸ÀÇ ´ë»ó ¹× ¹æ¹ý
3. Á÷Á¢ Àο빮ÀÇ ¾ð¼ú ¾çÅ À¯Çü
4. ¸ÎÀ½¸»
Âü°í¹®Çå



2. »ö Çü¿ë»çÀÇ ¾ð¾îÀû Ư¼º
3. »ö Çü¿ë»çÀÇ Æ¯¼º
4. °á·ÐÀ» ´ë½ÅÇÏ¿©
Resume


1. ¼­·Ð
2. ÀÌ·ÐÀû °íÂû
3. ½ÇÇè¹æ¹ý ¹× ȯ°æ ±¸Ãà
4. ½ÇÇè ¹× ºÐ¼®
5. °á·Ð
°¨»çÀÇ ±Û
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½Ã½ºÅÛ ±¸¼º
3. »ö»ó º¸Á¤ ¹× º¯È¯ ¹æ¹ý
4. ½Ã½ºÅÛ ±¸Çö ¹× ½ÇÇè °á°ú
5. °á·Ð
°¨»çÀÇ ±Û
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½ÇÇè
3. º»·Ð
4. °á·Ð
°¨»çÀÇ ±Û
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. ½ÇÇè °á°ú
4. °á·Ð
°¨»çÀÇ ±Û
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð ¹× ±âÁ¸ ¿¬±¸µ¿Çâ
2. ½Ç½Ã°£¿ä±ÝÁ¦(RTP)¿Í ¼ö¿ä¹ÝÀÀ
3. HEMSÀÇ ±âº»±¸Á¶ ¹× ±â´É
4. °¡Àü±â±âº° ¿îÀüƯ¼º°ú È¿¿ëÇÔ¼ö
5. »ç·Ê¿¬±¸
6. °á·Ð ¹× ÇâÈÄ ¿¬±¸À̽´
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. Á¦¾ÈÇÑ ½Â¾ÐÇü ´Ü»ó ÀιöÅÍ ½Ã½ºÅÛ
3. ½Ã¹Ä·¹À̼Ç
4. ½ÇÇè
5. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. º»·Ð
3. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½Ã½ºÅÛÀÇ ±¸¼º
3. ½ÇÇè ¹× °á°ú °íÂû
4. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. °íÁ¤ÀڱǼ± Àý¿¬¹°ÀÇ ºÎºÐ¹æÀü Ư¼º
3. ¿îÀü Áß ºÎºÐ¹æÀü Áø´Ü½Ã½ºÅÛ
4. ÃøÁ¤ µ¥ÀÌÅÍ ºÐ¼®
4. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ¥²-¥´Á· È­ÇÕ¹°¹ÝµµÃ¼ žçÀüÁö¸ðµâ
3. ½ÇÇè ¹× ¼º´ÉºÐ¼® °á°ú
4. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. º»·Ð
3. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ¿ª E±Þ Á֯ļö ü¹è±â ¼³°è
3. ¿ª E±Þ Á֯ļö ü¹è±â Á¦ÀÛ ¹× ÃøÁ¤
4. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. ÀÌ·ÐÀû °íÂû
4. ½ÇÇè°á°ú ¹× °íÂû
5. °á·Ð
°¨»çÀÇ ±Û
References
ÀúÀÚ¼Ò°³


1. Introduction
2. Power Factor Definition
3. Development and Analysis of Proposed Scheme
4. Algorithm for PF Measurement
5. Simulation Results and Performance Analysis
6. Conclusion
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ±¤ ¼Û¼ö½Å ½Ã½ºÅÛ
3. ±¤½ÅÈ£ÀÇ ¼ö½Å°ú ÀâÀ½
4. Àü¼Û½ÅÈ£ SNR ¹× BER
5. °á·Ð
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgments
REFERENCES


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè°èȹ ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. Introduction
2. Experimental
3. Results and Discussion
4. Conclusion
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgments
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgments
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES


1. ¼­·Ð
2. À×Å©Á¬ ÇÁ¸°ÆÃÀ» ÀÌ¿ëÇÑ flexible ¼ÒÀÚ °³¹ß
3. Novel approaches for inkjet printing
4. °á·Ð
Acknowledgment
REFERENCES


1 Introduction
2. Background
3. Experimentals
4 Results and Discussion
5 Conclusion
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgments
REFERENCE


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES


1. Introduction
2. Experimental Procedure
3. Results and Discussion
4. Conclusions
REFERENCES


1. Introduction
2. Experimental Procedure
3. Results and Discussion
4. Conclusions
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCE


Introduction
2. Materials and Methods
3. Results and Discussion
4. Conclusion
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES


1. ¼­·Ð
2. ½ÇÇè ¹æ¹ý
3. °á°ú ¹× °íÂû
3. °á·Ð


1. Introduction
2. Experimental Procedures
3. Results and Discussion
4. Conclusion
Achknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× Åä·Ð
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Acknowledgment
REFERENCES


1. Introduction
2. Experimental
3. Results
4. Discussion
5. Conclusions
Acknowledgments
REFERENCES


1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
REFERENCES



2. ±¥ºÒÀÇ ¿ª»ç
3. ±¥ºÒÀÇ ¼º°Ý°ú ¾ç½Ä
4. ±¥ºÒ Á¦ÀÛ°ú Çå±¥(úÌÎÐ)
5. ±¥ºÒÀÇ À¯Çü




2. ´çÀâÈ­ »ý¼ºÀÇ »ýÅÂ¿Í Àι®¹è°æ
3. ´çÀâÈ­ÀÇ ºÐ·ù
4. ´çÀâÈ­ÀÇ Á¦ÀÛ
5. ´çÀâÈ­ÀÇ ÀåÇ¥(íû?)


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3. ÇÏȸŻÀÌ ¿À·¡ º¸Á¸µÉ ¼ö ÀÖ¾ú´ø ÀÌÀ¯
4. ÇÏȸŻÀ» º¹Á¦ÇÏ·Á¸é
5. °³º° ÇÏȸŻÀÇ Á¶Çü ÀÌÇØ
6. ÇÏȸŻ Á¦ÀÛ°úÁ¤





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4. È«¿°ÀÇ Á÷¹° ºÐ¼®°ú Àü½Âü°è
5. ¸ÎÀ½¸»






2. à´ðãîü¿¡¼­ º» Óìû³èºñ«ÀÇ ÀÇ»ó
3. Óìû³èºñ«ÀÇ º´¿¡ ´ëÇØ¼­
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5. ¿©¼º»çÀÇ ½ÃÁ¡¿¡¼­
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3. êó?Óìû³èºñ«îÜÜ»
4. ðóÙëò¤îÜ?󢡶ú­?¡·
5. ó×î¤åüàõÞÈîÜÊÇÓø
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2. Óìû³èºñ«îÜûæìØ
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2. ÇÁ¶û½º¾î±³À°°ú ¹ßÀ½±³À°
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2. ÇÁ¶û½º¾î ±³°ú¼­ÀÇ ¿ÜÇüÀû üÁ¦ ºñ±³
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2. ¿µ¾î·Î °¡¸£Ä¡´Â ¼ö¾÷ÀÇ ÀåÁ¡
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2. ¿¹Àý±ÔÄ¢¿¡ ´ëÇÑ µÎ °¡¼³
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2. queP¸¦ Åë»çÀû ¼¶À¸·Î º¸±â ¾î·Æ´Ù
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2. ¹®¹ýÈ­ÀÇ ±â¿ø°ú ¿ª»çÀû °³¿ä
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2. ÀºÀ¯ÀÇ ¿ªµ¿Àû ¼º°Ý
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2. Á÷Á¢ Àο빮ÀÇ ¹ßÈ­ ¾çÅÂ
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2. ÀÛ°¡ÀÇ ºÐ½Å-°í¸³À¸·Î ¼ö·ÅµÇ´Â Àι°
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2.¡ººÒ¡»ÀÇ ¼Ò°³ ¹× ±¸¼º
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2. Le chien
3. L'elephant
4. L'ours
5. La tortue
6. La panthere
7. Conclusion
BIBLIOGRAPHIE
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2. Marivaux et L'ile des esclaves
3. Descriptif des activites pedagogiques
4. Observations et ouvertures- a la place de la conclusion
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1. ¼­·Ð
2. ¼³°è ¹× Á¦ÀÛ
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ABSTRACT
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1. ¼­·Ð
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3. ¿À¹ö·¦ °æ°£¿¡¼­ ¹«È¿ Àλó ÁöÁ¡ÀÎ ¡°take-off ÁöÁ¡¡±
4. ¹«È¿ ÀÎ»ó °æ°£¿¡¼­ µå·ÎÆÛ ±æÀÌ °è»ê ±â¹ý
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7. »ç·Ê °è»ê
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3. °í¼ÓÀ̵¿ÇÏÁß ÀçÇö ½ÃÇè °ËÁõ ¹æ¹ý
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2. ±âÁ¸ÀÇ °¡¼³°ø¹ý
3. PC-Slab ÇÕ¼º ÆÇÇü±³ À¯µµ»óÈ­¡¡¼±·ÎÀÌ¼Û °¡¼³°ø¹ý
4. ÆÇÇü±³ °Å´õ ±³Ã¼ ¼±·ÎÀÌ¼Û °¡¼³°ø¹ý
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References


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Reference


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Abstract


2. È£±¹·æ ¼³È­ÀÇ ÀÚ·á¿Í Àü½ÂÀǽÄ
3. È£±¹·æ ¼³È­¿¡ ³ªÅ¸³­ ½Å°ú Àΰ£ÀÇ °ü°è
4. Àü½ÂÀǽİú ½ÅÀΰüÀÇ ¿ª»çÀû º¯¸ð
5. ¸Î´Â¸»


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2. º»·Ð
3. °á·Ð
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1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. °ø¹ý Àû¿ë ¹æ¹ý
4. °á°ú
5. °íÂû


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1. ¼­·Ð
2. ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
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1. ¼­·Ð
2. ½ÇÇèÀåÄ¡ ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
5. ȍȍ
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1. ¼­·Ð
2. ½ÇÇè¹æ¹ý ¹× ¿¬±¸´ë»ó ¸Å¸³Áö Ư¼º
3. °á°ú ¹× °íÂû
4. °á·Ð
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1. ¼­·Ð
2. ½ÇÇèÀç·á ¹× ¹æ¹ý
3. ½ÇÇè°á°ú ¹× °íÂû
4. °á·Ð
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ÃÊ·Ï
1. INTRODUCTION
2. MATERIALS AND METHODS
3. RESULTS AND DISCUSSION
4. CONCLUSION
4. ACKNOWLEDGEMENT
REFERENCES


ÃÊ·Ï
1. ¼­·Ð
2. ½ÇÇèÀç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
3. °á·Ð
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1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
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Abstract
1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. Á¤Ã¥Àû °íÂû
5. °á·Ð
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Abstract
1. ¼­·Ð
2. GloBallast Programme
3. À§Çصµ Æò°¡ °³¼± ¹æ¾È
4. °á·Ð
Èıâ
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Abstract
1. ¼­·Ð
2. ½ÇÇè ¸ðµ¨
3. ½ÇÇè ÀåÄ¡
4. ½ÇÇèÀýÂ÷
5. ½ÇÇè°á°ú ¹× ºÐ¼®
6. °á·Ð
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Abstract
1. ¼­·Ð
2. ÇØ¿ªÀÌ¿ëÇùÀÇÁ¦µµ ¿î¿ë ÇöȲ
3. Á¦µµ¿î¿ë ½ÇÀû ºÐ¼® ¹× ÇØ¿ªÀ̿롤°³¹ßÀ¯Çü Æò°¡
4. ÇØ¿ªÀÌ¿ëÇùÀÇÁ¦µµÀÇ È¿À²¼º Á¦°í¹æ¾È µî Á¤Ã¥Á¦¾ð
5. °á·Ð
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Abstract
1. ¼­·Ð
2. ¼öÄ¡½ÇÇè
3. °á°ú ¹× °íÂû
4. °á·Ð
°¨»çÀÇ ±Û
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Abstract
1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
°¨»çÀÇ ±Û
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Abstract
1. ¼­·Ð
2. ÇÁ·ÎÆç·¯¿¡ ´ëÇÑ °ø±â À¯ÀÔ(ventilation) È¿°ú
3. ºÎºÐ ħ¼ö ÇÁ·ÎÆç·¯ÀÇ Ãàô È¿°ú
4. ħ¼ö ±íÀ̺° bollard pull ½ÃÇè
5. ºÎºÐ ħ¼ö ÇÁ·ÎÆç·¯ÀÇ bollard pull Ãß·Â ¹× Åä¿ÀÅ© ÃßÁ¤
6. ºÎºÐ ħ¼ö ÇÁ·ÎÆç·¯ÀÇ bollard pull ¼öÄ¡ ÇØ¼®
7. °á·Ð
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Abstract
1. ¼­·Ð
2. ÇØ¼® ¸ðµ¨ ¹× ¼öÄ¡°è»ê Á¶°Ç
3. À¯µ¿Çؼ® °á°ú
4. °á·Ð
5. Èıâ
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Abstract
1. ¼­·Ð
2. ¼¾¼­ ÄÚ¾î
3. ¼¾¼­ ÄÚ¾îÀÇ ±â¸§¿¡ ´ëÇÑ ¹ÝÀÀ ½ÇÇè
4. ¼¾¼­ Ç÷§Æû
5. ¼¾¼­ Ç÷§ÆûÀ» Àû¿ëÇÑ ±â¸§ ŽÁö ½ÇÇè
6. °á·Ð
ȍȍ
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Abstract
1. ¼­·Ð
2. º¯Çüµµ ÃßÁ¤
3. °á·Ð
Èıâ
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Abstract
1. ¼­·Ð
2. ¼±¹ÚÆòÇü¼ö À§ÇصµÆò°¡ ¹æ¹ý
3. ¼±¹ÚÆòÇü¼ö Á¾º° ƯÀ̼º À§Çصµ Æò°¡
4. °á·Ð
Èıâ
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Abstract
1. ¼­·Ð
2. Àú¿Â ÇØ¼ö¿¡³ÊÁö ÀÌ¿ë ³­¹æ ¹× ´ã¼öÈ­»çÀÌŬ
3. °á°ú ¹× °íÂû
3. °á·Ð
Èıâ
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Abstract
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¥±. °ü·Ã ¿¬±¸
¥². ½Ç½Ã°£ Xen ½Ã½ºÅÛ ¼³°è ¹× ±¸Çö
¥³. ½ÇÇè °á°ú
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Âü°í¹®Çå
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Abstract
¥°. ¼­·Ð
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¥². µå¸®ÇÁÆ®Çö»óÀÇ ºÐ¼® ¹× º¸»ó
¥³. ½ÇÇè°á°ú ¹× °íÂû
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Âü°í¹®Çå
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Abstract
¥°. ¼­·Ð
¥±. ¿ë¾î ¹× ¿¬±¸ µ¿±â
¥². °øÅë ³í¸®½Ä »êÃâ
¥³. ½ÇÇè °á°ú
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Abstract
¥°. ¼­·Ð
¥±. ±âÁ¸ÀÇ PWM µð¹Ö ¹æ¹ý
¥². HE-PPWM ±â¹Ý LED Á¦¾î±â
¥³. ½ÇÇè °á°ú
¥´. °á·Ð
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ÀúÀÚ¼Ò°³


¿ä¾à
¥°. Introduction
¥±. Circuit Description and Operation
¥². Linear Transconductor
¥³. Bandpass Filter
¥´. Simulation Results
¥µ. Conclusion
References
Authors


¿ä¾à
¥°. Introduction
¥±. Design of Advanced Multimedia System with Wireless HD Connection Capability
¥². Experimental Study
¥³. Conclusions
References
Author


¿ä¾à
¥°. Introduction
¥±. Sliding Mode Control
¥². Unified SMC Design Based on the Approximated Model for Stable Process with Dead time
¥³. Simulation Study
¥´. Conclusions
References
Authors


¿ä¾à
¥°. Introduction
¥±. The Effect of Sunlight-Incident Angle on a Solar Concentrator Output
¥². The Effect of Cell Temperature on Solar Concentrator Output Power
¥³. Simulation Results
¥´. Conclusions
References
Authors


Abstract
¥°. ¼­·Ð
¥±. À½¾Ð·¹º§-Á֯ļö ºÐÆ÷µµ
¥². ¾îÀ½ ºÐÆ÷µµ
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Abstract
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Abstract
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¥³. Á¦¾ÈµÈ ¼º´É Æò°¡ ¹æ¹ýÀÇ °ËÁõ ¹æ¹ý
¥´. ½ÇÇè ºÐ¼® °á°ú
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Abstract
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¥³. °á·Ð
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¿ä¾à
¥°. Introduction
¥±. Skin Region Segmentation
¥². Shadow Region Detection
¥³. Shadow Effect Evaluation
¥´. Experimental Results
¥µ. Conclusions and Future Work
References
Authors


Abstract
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Âü°í¹®Çå
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Abstract
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¥³. Á¦¾ÈÇÏ´Â ´ë¸®Àº´Ð¼­¸í ¹æ½Ä
¥´. Á¦¾ÈÇÏ´Â ´ë¸®Àº´Ð¼­¸í ¹æ½ÄÀÇ ¾ÈÀü¼º ºÐ¼®
¥µ. Á¦¾ÈÇÏ´Â ´ë¸®Àº´Ð¼­¸í ¹æ½ÄÀÇ È¿À²¼º ºÐ¼®
¥¶. Á¦¾ÈÇÏ´Â ´ë¸®Àº´Ð¼­¸í ¹æ½ÄÀÇ ÀÀ¿ë
¥·. °á·Ð
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Abstract
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¥±. SAN
¥². SAN ½ºÀ§Ä¡ ¸ðµ¨¸µ
¥³. ½Ã¹Ä·¹ÀÌ¼Ç ¹× ¼º´ÉºÐ¼®
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Abstract
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¥². µðÁöÅÐ ½Ã³×¸¶ ½Ã½ºÅÛ
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Abstract
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¥´. °á·Ð
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Abstract
¥°. ¼­·Ð
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¥´. °á·Ð
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¥°. Introduction
¥±. Current Systems' Approaches
¥². Proposed System
¥³. Pilot Study
¥´. Conclusions
References
Authors


Abstract
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¥±. °ü·Ã ¿¬±¸
¥². ANP ºÐ¼®À» À§ÇÑ ¼Ó¼º ³×Æ®¿öÅ© ±¸¼º
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Abstract
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Abstract
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Abstract
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Abstract
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Abstract
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¥². »ïÁß¼±Çü ÄÁÅõ¾î Æ®¸®
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I. ¼­·Ð
II. ¿¬±¸¹æ¹ý
III. °á°ú ¹× ³íÀÇ
IV. °á·Ð ¹× Á¦¾ð
Âü°í¹®Çå


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II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð
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I. ¼­·Ð
II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð ¹× Á¦¾ð
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III. ¿¬±¸¹æ¹ý
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V. ³íÀÇ
VI. °á·Ð ¹× Á¦¾ð
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II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð ¹× Á¦¾ð
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I. ¼­·Ð
II. ¹«¼ú ÇüÀÇ Çü¼º°úÁ¤
III. ¹«¼ú ÇüÀÇ Àǽİú ±â¼úÀû¿ø¸®
IV. Çö´ë»çȸ¿¡ÀÇ ¹«¼ú ÇüÀÇ °¡Ä¡¿¡ ´ëÇÑ ³íÀÇ
V. °á·Ð
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II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð ¹× Á¦¾ð
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I. ¼­·Ð
II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð
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II. ¿¬±¸¹æ¹ý
III. °á°ú ¹× ³íÀÇ
V. °á·Ð
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I. ¼­·Ð
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IV. °á·Ð ¹× Á¦¾ð
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II. ¿¬±¸¹æ¹ý
III. °á°ú
IV. ³íÀÇ
V. °á·Ð ¹× Á¦¾ð
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¥°. Introduction
¥±. Methods
¥². Results
¥³. Discussion
Reffences


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IV. °á·Ð ¹× ³íÀÇ
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¥°. Introduction
¥±. Study Procedures
¥². Statistical Treatment of the Data
¥³. Discussion and Conclusions
References


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Abstract
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ABSTRACT
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Abstract
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Abstract
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3. ½ÇÇè °á°ú
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2. ¸ðµ¨ ±â¹Ý ·ÎÁ÷ ¼³°è
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4. ·ÎÁ÷ ÃÖÀûÈ­ ¹æ¾È ¿¬±¸
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2. Design of controller with reinforcement learning
3. Experiments of Motion Control
4. Conclusion
Acknowledgement
References


2. ºñÇàü ¼³°è
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2. Á¶±âÀçȰ ÈÆ·Ã ½Ã½ºÅÛ
3. ½ÇÇè¹æ¹ý
4. °á°ú
5. °íÂû
6. °á·Ð
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2. ½Ã½ºÅÛ ±¸¼º ¹× ½ÇÇè¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
°¨»çÀÇ ±Û
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1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. ¿ä¾à ¹× °á·Ð
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Abstract
1. ¼­·Ð
2. ¿¬±¸¹æ¹ý ¹× Àç·á
3. °á°ú ¹× °íÂû
4. °á·Ð
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1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú
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Abstract
1. ¼­·Ð
2. ÇØ¾ç°ü±¤¿©°Ç ºÐ¼®
3. ±¹³» ÇØ¾ç°ü±¤ ¹ýÁ¦µµ ÇöȲ ¹× ¹®Á¦Á¡
4. ÇØ¾ç°ü±¤ Ȱ¼ºÈ­¸¦ À§ÇÑ Á¤Ã¥Àû¡¤Á¦µµÀû °³¼±¹æÇâ
5. °á·Ð
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Abstract
1. ¼­·Ð
2. »ý¹°´Ù¾ç¼ºÇù¾à»ó ±âÈĺ¯È­ ³íÀǵ¿Çâ
3. »ý¹°´Ù¾ç¼ºÇù¾à»ó ±âÈĺ¯È­ °ü·Ã ÀïÁ¡»çÇ×
4. °á·Ð
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1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú
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Abstract
1. ¼­·Ð
2. º»·Ð
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ABSTRACT
1. ¸Ó¸®¸»
2. ÇØ»ó¿¡¼­ ±¹°¡°üÇÒ±ÇÀÇ ÇѰè¿Í È®´ë
3. ½Çü¹ý(Çü¹ý)ÀÇ ¿ª¿ÜÀû¿ë°ú Çü»ç°üÇÒ±Ç
4. ÀýÂ÷¹ý(Çü»ç¼Ò¼Û¹ý)ÀÇ ÇØ»ó¹üÁË¿¡ Àû¿ë ¿ä°Ç
5. ¸ÎÀ½¸»
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1. ¼­·Ð
2. ±¹Àû¿ÜÇ×ÇØ¿î¾÷ÀÇ ÇöȲ
4. ¿ÜÇ×¼±»çÀÇ °æ¿µÈ¿À²¼º ºÐ¼®°á°ú
5. °á·Ð



2. ¼öÄ¡ÇØ¼®ÀÇ ÀÌ·Ð
3. ¼öÄ¡ÇØ¼® °á°ú
4. °á·Ð
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2. ÇØ¾È¾Èº®ÀÇ ¾ÈÁ¤¼ºÇؼ®À» À§ÇÑ ÀÌ·ÐÀû ¹è°æ
4. °á·Ð
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2. 3Â÷¿ø¼ö¸®¸ðÇü½ÇÇè
3. °á°ú ¹× °íÂû
4. °á·Ð
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2. 3Â÷¿øºÒ±ÔÄ¢ÆÄ¼öÄ¡ÆÄµ¿¼ö·ÎÀÇ °³¿ä
3. ¼öÄ¡ÇØ¼®
4. °á·Ð
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1. ¼­·Ð
2. ÇØ¾ç¿À¿°»ç°í ÇöȲ ¹× ¿øÀÎ ºÐ¼®
3. ¼ÒÅë°ú °ü½É ±×¸®°í ¾ÈÀü°ü¸® ´ëÃ¥
4. °á·Ð
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1. ¼­·Ð
2. ¿ì¸®³ª¶ó ´ë À¯·´ ÄÁÅ×ÀÌ³Ê ¿î¼Û ·çÆ® ¼Ò°³
3. °¢ ¿î¼Û °æ·Î ºñ±³ºÐ¼®
4. TSRÀÇ È°¼ºÈ­¸¦ À§ÇÑ Çö¾È ¹®Á¦
5. °á·Ð




1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. ÆÄ¶ûºÐÆ÷ ºÐ¼® °á°ú
4. °á·Ð ¹× ¿ä¾à
Âü°í¹®Çå







Abstract
1. ¼­·Ð
2. °¹Áö··ÀÌ »ê¾÷ÀÇ ÇöȲ
3. ¹ÙÀ§Åа¹Áö··ÀÌÀÇ À°»ó¾ç½Ä
4. ¹ÙÀ§Åа¹Áö··ÀÌÀÇ »ê¾÷È­
5. °á·Ð
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1. ¼­·Ð
2. ¼ö¸®¸ðÇü½ÇÇè
3. ½ÇÇè°á°ú ¹× °íÂû
4. °á·Ð
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Abstract











1. Introduction
2. How do dispersants work for spilled oil?
3. Why are dispersants not used widely in oil spill incidents?
4. Effectiveness of Dispersant Utilization
5. Consideration of Using Dispersants More Positively Based on Scientific results
6. Conclusion
References



1. ¼­·Ð
2. ¼öÄ¡ ¸ðÇüÀÇ ±¸Ãà
3. ³«µ¿°­ Çϱ¸¿ªÀÇ ÇØ¼ö ¼øÈ¯±¸Á¶
4. ¿ä¾à ¹× °á·Ð
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Abstract
1. ¼­·Ð
2. ¿¬±¸¹æ¹ý ¹× Àç·á
3. °á°ú ¹× °íÂû
4. °á·Ð
Èıâ
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1. ¼­·Ð
2. ¼ö¸®¸ðÇü½ÇÇè
3. ºí·ÏÀÇ ¾ÈÁ¤¼º
4.½ÇÇè°á°ú
5. °á·Ð
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Abstract
1. ¼­·Ð
2. Æò°¡ µµ±¸°³¹ß
3. ½Ã¹üÁ¶»ç ½Ç½Ã
4. Á¦µµÀÇ °³¼±¹æ¾È
5. °á·Ð
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1. ¼­·Ð
2. FTP ÄÚµå °³Á¤
3. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. ¿ä¾à ¹× °á·Ð
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2. º»·Ð
3. °á·Ð
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1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð
Èıâ
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ABSTRACT
1. ¼­·Ð
2. À¯ÇØ ¼öÁß»ý¹° ¼ºÀå ´É·Â ¸ðÀÇ kinetic ¹æÁ¤½Ä
3. À¯ÇØ ¼öÁß»ý¹° ¼ºÀå ´É·Â ¸ðÀÇ
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. °ü¸®´ë»ó Á¤º¸ Á¤ÀÇ
3. ½Ã½ºÅÛ ¼³°è
4. °á·Ð
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1. ¼­·Ð
2. ÇØ¾ç¿À¿°»ç°í ÇöȲ ¹× »ç·Ê·Î º» ¿øÀÎ ºÐ¼®
3. ¼ÒÅë°ú °ü½É ±×¸®°í ¾ÈÀü°ü¸®¸¦ ÅëÇÑ ¿¹Àμ± ¿À¿°»ç°í ZERO ´Þ¼º
4. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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Abstract
1 . ¼­·Ð
2. ¿¬±¸¹æ¹ý ¹× Àç·á
3. °á°ú ¹× °íÂû
4. °á·Ð
Âü°í ¹®Çå


1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
Âü°í¹®Çå


1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. ÆÄ¶ûºÐÆ÷ ºÐ¼® °á°ú
4. °á·Ð ¹× ¿ä¾à
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Abstract
1. ¼­·Ð
2. ÇØ¼® ¸ðµ¨ ¹× ¼öÄ¡°è»ê Á¶°Ç
3. À¯µ¿Çؼ® °á°ú
4. °á·Ð
5. Èıâ
6. Âü°í¹®Çå






ABSTRACT
1. ¼­·Ð
2. À¯»çÀÇ Æ¯¼º
3. EFDC ¸ðÇüÀÇ Æ¯Â¡
4. Á¡Âø¼º ÅðÀû¹°ÀÇ À̵¿ ¸ðÀÇ
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼¾¼­ ÄÚ¾îÀÇ Á¦ÀÛ
3. ¼¾¼­ ÄÚ¾îÀÇ Æ¯¼º ºÐ¼® ½ÇÇè
4. °á·Ð
ȍȍ
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ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
Èıâ


ABSTRACT
1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. °á·Ð ¹× Àü¸Á
Âü°í¹®Çå




ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
Èıâ
Âü°í¹®Çå


ABSTRACT
1. ¼­·Ð
2. º»·Ð
3 °á·Ð
Èıâ
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ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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1. ¼­·Ð
2. ÇØ»ódz·Â ÃßÁø ·Îµå¸Ê
3. ÇØÀúÄÉÀÌºí º¸È£°ø¹ý
4. ÇØ»ódz·Â´ÜÁö ÇØ¾çȯ°æ ¹× ÇØÀúÄÉÀ̺í À§ÇØ¿ä¼Ò
5. °á·Ð
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Abstract
1. INTRODUCTION
2. PERSPECTIVES OF WORLD OFFSHORE WIND POWER MARKET
3. KOREA¡¯S CHALLENGE FOR THE OFFSHORE WIND FARMS
4. SUBSTRURUE TECHNOLOGY
5. CLOSING REMARKS
6. ACKNOWEDGEMENT
7. REFERENCES



ABSTRACT
1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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1. ¼­·Ð
2. ÇØ¾ç¿ÂµµÂ÷ ¿¡³ÊÁöÀÇ ºÐÆ÷ ¹× º¯µ¿¼º
3. ÇØ¾ç¿ÂµµÂ÷¹ßÀü ±â¼úÇöȲ ¹× °³¹ß¹æÇâ
4. ÇØ¾ç¿ÂµµÂ÷¹ßÀüÀÇ ½Ç¿ëÈ­ ÃßÁø¹æ¾È
5. °á·Ð
ȍȍ
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1. ¼­·Ð
2. º»·Ð
3. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. Àç·á ¹× ¹æ¹ý
3. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. À̾ȷù ¿øÀÎ±Ô¸í °üÃø
3. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ÀÚ·á ¹× ¹æ¹ý
3. °á°ú ¹× °íÂû
4. ¿ä¾à ¹× °á·Ð
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2. °Ç°­°ü·Ã »îÀÇ Áú ÇÁ·ÎÆÄÀÏ
3. °Ç°­°ü·Ã »îÀÇ Áú : EQ-5D index
4. °Ç°­°ü·Ã »îÀÇ ÁúÀÇ ¿µÇâ ¿äÀÎ
5. °á·Ð


2. °æÁ¦È°µ¿Àα¸ÀÇ Æ¯¼º ¹× ÀÇ·áÀÌ¿ë ½ÇÅÂ
3. Á¾»ç»óÀÇ ÁöÀ§ ¹× ¼Òµæ°èÃþ¿¡ µû¸¥ ÀÇ·áºñ ÁöÃâ
4. °á·Ð


2. 65¼¼ ÀÌ»ó ³ëÀÎÀÇ ¿ì¿ïÁõÀ¸·Î ÀÎÇÑ ÀÇ·áÀÌ¿ë°ú ÀÇ·áºñ Â÷ÀÌ ºñ±³
3. °á·Ð ¹× Á¤Ã¥Àû ÇÔÀÇ


2. ¿ì¸®³ª¶ó ¼ºÀεéÀÇ Èí¿¬ ¹× À½ÁÖ ½ÇÅÂ
3. °Ç°­Çàűºº° °Ç°­»óÅ ¹× ÀÇ·áÀÌ¿ë
4. ¸ÎÀ½¸»


2. °íÇ÷¾ÐȯÀÚ¿Í ´ç´¢º´È¯ÀÚÀÇ ÀϹÝÀûÀΠƯ¼º
3. °íÇ÷¾ÐȯÀÚÀÇ ÀǾàǰ º¹¾àºÒ ¼øÀÀ°ú ºñ¿ëºÎ´ã
4. ´ç´¢º´È¯ÀÚÀÇ ÀǾàǰ º¹¾àºÒ ¼øÀÀ°ú ºñ¿ëºÎ´ã
5. ³ª¿À¸ç


2. ³ëÀεéÀÇ ÀÇ·áÀÌ¿ë ¹× ÀÇ·áºñ ÁöÃâ
3. ¸ÎÀ½¸»


2. °í·ÉÃþÀÇ ¼ÒºñƯ¼º°ú ¼ÒºñÁöÃâÇàÅ ºÐ¼®
3. º¹Áö¿ë±¸ ¼ö¿ä °áÁ¤¿ä¼Ò ½ÇÁõ ºÐ¼®
4. °á·Ð


2. °³³ä°ú Ãß°è¹æ¹ý
3. ³ª´®Åë°è·Î º» º¹ÁöÁöÃâ ±Ô¸ð Ãß°è
4. Ãß°è°á°ú¿Í ±¹Á¦ºñ±³
5. ³ª°¨


United States Department of Agriculture
Food Safety and Inspection Service
Animal Plant Health Inspection Service (APHIS)
Food and Drug Administration
FDA CFSAN
FDA CVM
Summary


2. °Ç°­¿µÇâÆò°¡TWGÀÇ È°µ¿ °æ°ú
3. ȯ°æº¸°ÇÆ÷·³ TFȸÀÇÀÇ °á°ú
4. °á·Ð


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2010³â ±¹¹Î°Ç°­¿µ¾çÁ¶»ç °á°ú ¹ßÇ¥
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°Ç°­º¸Çè·á ºÎ°úü°è, ºÎ´ã´É·Â¿¡ ¸Â°Ô °³ÆíÇÑ´Ù
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³ëÀÎÀå±â¿ä¾ç Á¾»çÀÚ Ã³¿ì°³¼± À§ÇØ ¼ö°¡ 2.5% Àλó
ÀӽźÎÅÍ À°¾Æ±îÁö ¿ø½ºÅéÀ¸·Î Á¾ÇÕ»ó´ãÇϼ¼¿ä
OECD ȸ¿ø±¹°£ º¸°ÇÀÇ·á Áú ºñ±³°á°ú ¹ßÇ¥
µ¿Àý±â ¾ÕµÎ°í Àú¼Òµæ ºó°ïÃþ Àû±Ø ¹ß±¼¡¤Áö¿øÇÑ´Ù


´õ ÀÌ»ó ±â´Ù¸± ¼ö ¾ø´Ù°í?±â´Ù·Á¾ß¸¸ ÇÒ °É : Can¡¯t wait? Must wait
½Ä·áǰ °¡°Ô¸¦ ¿­¾î °Ç°­À» ÁöŲ´Ù : Poor access to fresh food isa solvable health problem


¥°. ¡®397³â üÁ¦¡¯ÀÇ ¼º¸³°ú Àü°³
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Abstract


¥°. äÌÔþüåì¡ÀÇ °³ÃÖ ¹è°æ
¥±. äÌÔþüåì¡ÀÇ Àü°³
¥². äÌÔþüåì¡¿¡¼­ÀÇ èÞÀÇ ´ëÀÀ
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Abstract


¥°. ½Å¶óÀÇ °¡¶ô±¹¡¤Å¹±âź±¹ º´ÇÕ°úÀϺ»¿­µµ ¿ÖÀÇ ´ëÀÀ
¥±. ʼø±¹ÀÇ ÅõÇ×°ú ÀϺ»¿­µµ ¿ÖÀÇ ´ëÀÀ
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¥±. °èü±â¿¡ º¸ÀÌ´Â »ç·áÀû Ư¡
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¥°. »ç·áºñÆÇ°ú ÀïÁ¡Á¤¸®
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¥². ¸ê¸Á Á÷ÀüÀÇ Á¤±¹ ¹× »ç·áÃæµ¹ÀÇ ¿øÀο¡ ´ëÇÑ ãËÖå
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Abstract


¥°. ÍÔÏ£ÕòÀÇ ýúßåëðÖÉ
¥±. ÛÝð­ÀÇ ýúßåëðÖÉ
¥². ãæÔþÀÇ ýúßåëðÖÉ
¸ÎÀ½¸»
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Abstract


¥°. ±âÈ£ÇÐÆÄ¿Í ¿µ³²ÇÐÆÄÀÇ ¼º¸³°ú Çй®Àû Ư¼ºÀÇ ºñ±³
¥±. ¼­¿øÀÔÁöÀÇ Ç³¼öÀû Ư¼º°ú ºñ±³
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Abstract


¥°. ³ë»óÃßÀÇ Àϱâ, °¡°è¿Í ÀÌ·Â
¥±. ³ë»óÃß°¡ÀÇ Àç»êº¯µ¿
¥². ³ë»óÃß°¡ÀÇ ³ó¾÷°æ¿µ
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Abstract


¥°. Çй®¹è°æ°ú ±³È¸Ã¢¼³ ÁÖ¿ªÀ¸·Î¼­ÀÇ À§Ä¡
¥±. õÁÖ±³ ½Å¾Ó ¼ö¿ë°ú »õ·Î¿î °¡Ä¡°ü Á¤¸³
¥². ÀüÅë Áö½ÄÀÎÀ¸·Î¼­ÀÇ °í³ú
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Abstract


¥°. ÇѸ»~ÀÏÁ¦°­Á¡±â µ¿·¡Áö¿ª °ø°£ÀÇ Á¦µµÀû °³Æí
¥±. ±Ù´ë µµ½Ã·ÎÀÇ ÀçÆí°ú Áö¿ªÀ¯ÁöÀÇ ´ëÀÀ
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Abstract


¥°. ºÎ»ê µ¿·¡ Áö¿ª
¥±. °æ³² µ¿ºÎ Áö¿ª
¥². °æ³² ³²ºÎ ÇØ¾È Áö¿ª
¥³. °æ³² ¼­ºÎ ³»·ú Áö¿ª
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Abstract


¥°. Áß±¹ ¸Á¸í°ú ³²¾ç Á¤Âø
¥±. ³²¾ç üÇè°ú °üÂûÀÇ ¾ç»ó
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Abstract


¥°. ¼³¸³°ú ºÎ»ê ÁøÃâ
¥±. Á¦1Â÷ ¼¼°è´ëÀü îúý­ ºÒȲ°ú º»Á¡ÀÇ ºÎ»ê ÀÌÀü
¥². Ä«½ÃÀÌÀÇ °æ¿µ°³¼± ³ë·Â°ú °æ¿µºÎÁø Áö¼Ó
¥³. ´ë°øÈ² ÈÄ ¼öÃâ½ÃÀå¿¡ ÈûÀÔÀº °æ¿µÈ£Àü
¥´. Àü½ÃüÁ¦±â °æ¿µ°ú ºÎ»ê°øÀåÀÇ À§»ó °­È­
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Abstract


2. ½Å¶óÀÇ ¸ê¸Á°ú ¡®ºÎȰ¡¯
3. ¸î °¡ÁöÀÇ Ó¨ßÌ


¥±. Àú¼­ÀÇ ±¸¼º°ú ³»¿ë
¥². ½Å¶óÇÏ´ë Á¤Ä¡»ç¿¡ ´ëÇÑ »õ·Î¿î ¹æÇâ¸ð»ö



2. The Social Right Construction on the Constitution of the Republic of China (Taiwan)
3. The Constitutionality of the of Prohibition against theNon-Vision Impaired to Engage in Massage Business
4. Conclusion¡ªthe national care duty for disadvantaged groups¡ªA never ending story?
Abstract
±¹¹®¿ä¾à


2. ÁßÈ­¹Î±¹(´ë¸¸) Çå¹ý»ó »çȸÀû ±âº»±ÇÀÇ ÇØ¼®
3. ºñ½Ã°¢Àå¾ÖÀÎÀÌ ¾È¸¶»ç°¡ µÉ ¼ö ¾øµµ·Ï ÇÑ ±ÔÁ¤ÀÇ ÇÕÇ强
4. °á·Ð - »çȸÀû ¾àÀڵ鿡 ´ëÇÑ ±¹°¡ÀÇ º¸È£Àǹ« - °áÄÚ ³¡³ªÁö ¾ÊÀ» À̾߱âÀΰ¡?


2. ìíÜâªÎúÊÛöúÞãù--Þ¸ÍÝ¡¤Ì«ó¬¡¤Þä?îÜÛÉð¶
3. ßæðíÏíªÈÐÃ?ªÎÏí×ס¤ëùÙâ
4. ìíÜâÏÐúÊÛöªÈÞäüåÏÐÊ«ªÎʦÒöàõ
ªªªïªêªË
Ò®é»é©ò©
±¹¹®ÃÊ·Ï


2. ìíÜâÀÇ úÊÛöúÞãù--Þ¸ÍÝ¡¤Ì«ó¬¡¤ÞäüåîÜ ÛÉð¶
3. ßæðíÏí°ú ÐÃÖÌÀÇ Ïí×ס¤ëùÙâ
4. ìíÜâÏÐ úÊÛö°ú ÞäüåÏÐÊ«ÀÇ Ê¦Òöàõ
¸¶Ä¡¸ç


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¥². ÞäüåÏÐÊ«ê«×âÀÇ ×âÒÕîÜ ÐÆËà
¥³. ÞäüåÏÐÊ«ê«×âÀÇ ãùúÞÛ°ÛöÖå
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2. ÞäüåÜÁî¡Ûöð¤ªÎÔÑú¾ªÈú¼ïÙªÎܨé»
3. ú¼ïÙÛöð¤ªÎÔÑú¾ªÈÞäüåÜÁî¡ú¼ïÙ
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2. ÞäüåÜÁî¡Ûöð¤ÀÇ ÔÑú¾°ú ú¼ïÙÀÇ Ü¨é»
3. ú¼ïÙÛöð¤ÀÇ ÔÑú¾°ú ÞäüåÜÁî¡ú¼ïÙ


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¥². ùêúÊîÜ Ûö×Èú°à·ÀÇ ê«öΰú ùÚïÒêÞúÊ̽ïÒ
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¥±. ÇÁ¶û½º ÀÇÈ¸ÇØ»êÁ¦µµÀÇ ¿ª»ç
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¥±. ±¹È¸ ÀÔ¹ý±Ç°ú ÀÔ¹ý°³¼± Àǹ«
¥². Çå¹ýÀçÆÇ¼Ò Çå¹ýÀçÆÇ±ÇÀÇ º»Áú°ú ÇѰè
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Abstract


¥±. »ç°ÇÀÇ °æ°ú¿Í ¹ý¿øÀÇ ÆÇ½Ã³»¿ë
¥². Á¤º¸°ø°³Ã»±¸±Ç°ú ¹æ¼ÛÀÇ ÀÚÀ¯ÀÇ ¿ì¿­°ü°è
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Abstract


¥±. ´ë¹ý¿øÆÇ°áÀÇ ¿äÁö
¥². ±ä±ÞÁ¶Ä¡ÀÇ º»Áú°ú ¹ýÀû ¼º°Ý
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¥´. Á¤ºÎ¿Í ¹ý¿øÀÇ ±ÇÇÑ¿¡ ´ëÇÑ ±ä±ÞÁ¶Ä¡¿Í ¹ý·üÀ¯º¸
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¥±. â¾÷Áß¼Ò±â¾÷ µîÀÇ ¹üÀ§
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Abstract


¥±. ºñÁÖÅðÅÁÖ¹ÎÀÇ °³³ä ¹× ÇöȲ
¥². ºñÁÖÅðÅÁÖ¹ÎÀÇ ÁÖ°Å±Ç ±Ù°Å¿Í ¹®Á¦Á¡
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Abstract


¥±. »ç»ýȰÀÇ ÀÚÀ¯¿Í °ø¹«¿ø
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Abstract




¥°. ¿¬±¸ÀÇ ¸ñÀû
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¥±. ÀÌ·ÐÀû ¹è°æ
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?;?;This research is designed do analyze how Koreans¡¯ patriotism and animosity against Japan affects tourism-destination image, tourism satisfaction, intention of revisit and recommendation, and the relation was investigated through the hypothesis based on understanding the concepts of variables and precedent studies. The proposed research model was confirmed by the structural equation model analyzation, and it was proved that Koreans¡¯ patriotism and animosity against Japan affects tourism-destination image, tourism satisfaction, intention of revisit and recommendation. This topic variously influenced the area of international marketing. However, it was not studied relatively. The significance of this research would be the analyzation about how Koreans¡¯ patriotism and animosity against Japan affects tourism-destination image, tourism satisfaction, intention of revisit and recommendation.

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?;?;The studies on psychological capital and the direct management of dissatisfied customers from the service recovery are vastly insufficient to cover the need. It is necessary that the studies on the new variables that cause positive effects on the service recovery and the variety of interrelationship tests should further be studied.
?;?;In conclusion, this study revealed that the personnel¡¯s psychological capital has positive effect on service failure; the successful service recovery has the positive effect on the personnel¡¯s perceived service quality. Moreover, the personnels are absorbed in the relationship with the customers when they con provide high-qnality service.

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?;?;According to the research findings, New Yorkers though that it is important that favor, freshness, nutrition, cleanliness &; experience of culture. On the other hand, Koreans in New York want combination of ingredient, reasonable price, speed of order and serving &; brand image more. And New Yorkers prefer bulgogi, bibimbop, kimchi, galbitang. Whereas, Koreans in New York prefer in the order of galbi, bibimbop, bulgogi, kimchi.

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¥°. INTRODUCTION
¥±. DATA SOURCE RELIABILITY AND METHODOLOGY
¥². STATISTICAL DATA AND ANALYSIS
¥³. CONCLUSION
References





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ABSTRACT
1. ¼­·Ð
2. ¹®Çå ¿¬±¸
3. Á¦¾È ¸ðµ¨
4. Á¦¾È ¸ðµ¨ÀÇ ºÐ¼®
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼±Ç࿬±¸ ºÐ¼®
3. °³¹ß ¸ðµ¨ÀÇ ÇÁ·¹ÀÓ¿öÅ©
4. °³ÀÎÁ¤º¸ À¯Ãâ»ç°í ºÐ¼® ¹× ÇÇÇØ¾× »êÃâ ¿ä¼Ò
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. Á¤º¸º¸¾È Á¤Ã¥Áؼö¿¡ °üÇÑ ÀÌ·ÐÀû °íÂû
3. ¿¬±¸¸ðÇü ¹× °¡¼³
4. º¯¼öÀÇ Á¶ÀÛÀû Á¤ÀÇ ¹× ÃøÁ¤¹æ¹ý
5. °¡¼³°ËÁõ ¹× °á°úºÐ¼®
6. °á·Ð
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ÀúÀÚ¼Ò°³


ABSTRACT
1. Introduction
2. Background
3. Empirical Study
4. Concluding Comments
References
Appendix
ÀúÀÚ¼Ò°³


ABSTRACT
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. ÀÍ¸í ³×Æ®¿öÅ©ÀÇ Åë½Å ¼Óµµ °³¼±
4. GeoIP¸¦ ÀÌ¿ëÇÑ Åë½Å ¼Óµµ °³¼± ½ÇÇè Æò°¡
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. Ç×°ø±â¹Ý½Ã¼³ º¸¾Èü°è ÇÁ·Î¼¼½º
4. Ç×°ø±â¹Ý½Ã¼³ º¸¾Èü°è ¸ðµ¨ ºÐ¼®
5. º¸È£Ã¼°è Æò°¡ °á°úÀÇ ¹Ý¿µ
6. ÇÏ´ÃÂ÷Çü º¸¾È°ü¸®Ã¼°è ÇÁ·¹ÀÓ¿öÅ©
6. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼±Ç࿬±¸
3. ¼Ò±Ô¸ð IT ¼­ºñ½º ±â¾÷ ÇÙ½É Á¤º¸ÀÚ»ê À¯ÇüºÐ·ù
4. Á¤º¸º¸¾ÈÀ» À§ÇÑ ¼Ò±Ô¸ð IT ¼­ºñ½º ±â¾÷ ÇÙ½É Á¤º¸ÀÚ»ê ½Äº°
5. ¿¬±¸°á°ú
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ÀúÀÚ¼Ò°³


ABSTRACT
1. Introduction
2. Research Background
3. Information Security Software Maintenance Cost Calculation
4. Analysis and Result
5. Conclusion
References
ÀúÀÚ¼Ò°³


ABSTRACT
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. ÀÇ°ß µ¥ÀÌÅÍ ¸ðµ¨¸µ
4. ¿Â¶óÀÎ °¨¼º ºÐ¼® ó¸®
5. ½ÇÇè ¹× ºÐ¼®
6. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼±Çà ¿¬±¸
3. ¿¬±¸ ³»¿ë
4. ¿¬±¸ °á°ú ºÐ¼®
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¼±Çà ¿¬±¸
3. ¿¬±¸¸ðÇü ¹× °¡¼³
4. ½ÇÁõ ºÐ¼®
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. °³³äÀû ¹è°æ
3. ¿¬±¸ ¹æ¹ý
4. ¿¬±¸ °á°ú ¹× ÅäÀÇ
5. ¿¬±¸ÀÇ ½Ã»çÁ¡
6. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¸ðÇü ¹× °¡¼³¼³Á¤
4. ¿¬±¸ ¹æ¹ý
5. ½ÇÁõºÐ¼®
6. °á·Ð ¹× Á¦¾ð
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ABSTRACT
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. ¿¬±¸¸ðÇü ¹× °¡¼³ÀÇ ¼³Á¤
4. ¿¬±¸¹æ¹ý ¹× °¡¼³ °ËÁõ
5. °á·Ð
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ABSTRACT
1. Introduction
2. Theoretical Background
3. Hypotheses Development
4. Data Collection and Result
5. Discussion
References
ÀúÀÚ¼Ò°³


ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ ¹× °¡¼³ ¼³Á¤
3. ¿¬±¸¹æ¹ý ¹× ½ÇÁõºÐ¼®
4. °á·Ð ¹× ½Ã»çÁ¡
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ABSTRACT
1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸ ¸ðµ¨
4. ¿¬±¸ ¹æ¹ý
5. ½ÇÁõ ºÐ¼®°ú ¹ß°ßÁ¡
6. °á¾ð
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ABSTRACT
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. ºí·Î±× °Ë»ö ½Ã½ºÅÛ
4. ½Ã½ºÅÛ ¼º´ÉÆò°¡
5. °á·Ð
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ABSTRACT
1. ¼­·Ð
2. ¿¬±¸ ¹è°æ ¹× ÇöȲ
3. Çٽɼº°úÁöÇ¥ÀÇ ±ºÁýºÐ¼®
4. ÀÚµ¿Â÷ »ê¾÷ÀÇ Çٽɼº°úÁöÇ¥ ±ºÁýºÐ¼®
5. °á·Ð
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ABSTRACT
1. Introduction
2. Theoretical Development
3. Research Method
4. Hypothesis Testing
5. Discussion and Conclusion
References
ÀúÀÚ¼Ò°³


1. ¼­·Ð
2. º»·Ð
3. °á°ú ¹× ÇØ¼®
4. °á·Ð
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1. ¼­·Ð
2. ¿¬±¸¹æ¹ý
3. °á°ú ¹× ÇØ¼®
4. °íÂû
5. °á·Ð
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1. ¼­·Ð
2. ¿¬±¸¹æ¹ý
3. ¿¬±¸°á°ú
4. ³íÀÇ
5. °á·Ð
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1. ¼­·Ð
2. ¿¬±¸ ¹æ¹ý
3. °á°ú
4. ³íÀÇ
5. °á·Ð
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1. ¼­·Ð
2. ÃøÁ¤ °³¿ä
3. ÃøÁ¤ °á°ú ¹× ºÐ¼®
4. °á·Ð
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3. ¿¬±¸°á°ú
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2. ¿¬±¸¹æ¹ý
3. ¿¬±¸ °á°ú ¹× °íÂû
5. °íÂû
6. °á·Ð ¹× Á¦¾ð
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2. ÀÌ·ÐÀû °íÂû
3. ´ëÇü¸¶Æ® Á¶¸íÇöȲ Á¶»ç
4. Á¶¸íȯ°æ °³¼±¹æ¾È ¿¬±¸
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2. ¿¬±¸ ¹æ¹ý
3. ¿¬±¸ °á°ú
4. ³íÀÇ
5. °á·Ð ¹× Á¦¾ð
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1. ¼­·Ð
2. ¿¬±¸¹æ¹ý
3. °á°ú ¹× ÇØ¼®
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I. ¼­¾ð
II. ȸ»çÁö¹è±¸Á¶¿¡ °üÇÑ ±ÔÁ¤ÀÇ °³Á¤³»¿ë
III. 2011³â °³Á¤»ó¹ý(ȸ»çÆí)ÀÇ °úÁ¦
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I. ßíàã
II. ÀÚ±ÝÁ¶´ÞÀÇ ÁÖ¿ä ÀïÁ¡
III. ÀڱݹÝȯÀÇ ÁÖ¿ä ÀïÁ¡
IV. Ì¿åÞ
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I. ¼­·Ð
II. ÁعýÅëÁ¦Á¦µµ¿¡ °üÇÑ ¿¬ÇõÀû °íÂû
III. °³Á¤»ó¹ý»ó ÁعýÁö¿øÀÎÁ¦µµ-ÁعýÁö¿øÀÎ Á¦µµÀÇ ÇöÀç
IV. ÁعýÁö¿øÀÎ Á¦µµÀÇ ¹Ì·¡
V. °á¾î
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II. 2011³â °³Á¤ ȸ»ç¹ýÀÇ ³»¿ë°ú °úÁ¦-ȸ»çÁö¹è±¸Á¶¸¦ Áß½ÉÀ¸·Î


2. Á¦µµµµÀÔÀÇ ¹è°æ
3. ÁعýÁö¿øÀÎÀ» µÎ¾î¾ß ÇÏ´Â »óÀåȸ»çÀÇ ¹üÀ§
4. ÁعýÁö¿øÀÎÀÇ Àü¹®¼º, µ¶¸³¼º º¸ÀåÀ» À§ÇÑ Á¶Ä¡ÀÇ Çʿ伺
5. »óÀå¹ýÀÎÀÇ ÁعýÅëÁ¦±âÁØ ¹× ÁعýÁö¿øÀÎ µµÀÔÀ» À§ÇÑ Àμ¾Æ¼ºê Á¦°ø
6. ±â¾÷¼ö¿ä¸¦ °¨¾ÈÇÑ ¹ý·ü±³À° °³¼± ¹× º¸¿Ï
7. ÁعýÁö¿øÀÎÁ¦µµÀÇ È®´ë¿Í °ü·ÃÇÏ¿©


II. 2011³â °³Á¤ ȸ»ç¹ýÀÇ ÇØ¼®»ó ÁÖ¿ä ÀïÁ¡ - ±â¾÷À繫 ºÐ¾ß¸¦ Áß½ÉÀ¸·Î


I. ¼­- À뱂 º¸ÀåüÁ¦ÀÇ ´Ùº¯È­
II. ±¹³» ÀαǺ¸ÀåüÁ¦ÀÇ ±¸Á¶
III. ±¹Á¦Àû ÀαǺ¸È£Ã¼Á¦ÀÇ Àü°³¿Í Ư¡
IV. ±¹Á¦Àû Â÷¿ø¿¡¼­ÀÇ À뱂 ±Ô¹üÀ» ÅëÇÑ ÀαǺ¸È£ÀÇ ½ÇÁ¦ - ±¹³»Àû °üÁ¡¿¡¼­
V. °á·Ð
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I. ¼­¼³
II. ¹«¾×¸éÁÖ½Ä Á¦µµÀÇ È¿¿ë°ú Àå´ÜÁ¡
III. ÁÖ¿ä±¹ÀÇ ¹«¾×¸éÁÖ½Ä Á¦µµ
IV. ¹«¾×¸éÁÖ½ÄÀÇ ¹ý·ü°ü°è
V. ¾×¸éÁֽİú ¹«¾×¸éÁֽİ£ÀÇ »óÈ£ ÀüȯÀýÂ÷ ¹× Àüȯȿ°ú
VI. °á¾î
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I. ¹®Á¦ÀÇ Á¦±â
II. ÀÌ»ç´Â ´©±¸ÀÇ ÀÌÀÍÀ» º¸È£ÇØ¾ß Çϴ°¡?´ë¸³µÇ´Â °ßÇØ
III. ÃÖ±ÙÀÇ LBO ÆÇ°á °ËÅä
IV. À§ »ç°ÇµéÀ» º¸´Â ½Ã°¢
V. ¸ÎÀ½¸»
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I. ¹Î»çÀÇ Çü»çÈ­ÀÇ Á¤Á¡ : »óÀåȸ»ç °æ¿µÁøÀÇ °æ¿µ»ó ÇàÀ§¿¡ ´ëÇÑ ¹èÀÓÁË Ã³¹ú
II. °æ¿µ»ó ÇàÀ§¿¡ ´ëÇÑ ¹èÀÓÁË Àû¿ëÀÇ È®Àå
III. »óÀåȸ»ç °æ¿µÇàÀ§¿¡ ´ëÇÑ ¹èÀÓÁË Àû¿ë È®ÀåÀÇ ¿øÀÎ
IV. »óÀåȸ»ç °æ¿µÁø¿¡ ´ëÇÑ ¹èÀÓÁË Ã³¹úÀÇ ÇѰè¿Í ±× ÅðÁ¶
V. »óÀåȸ»ç °æ¿µÁøÀÇ °æ¿µÇàÀ§¿¡ ´ëÇÑ ¹èÀÓÁË Àû¿ëÀÇ Àü¸Á°ú ±× ´ë¾È
VI. ±ÛÀ» ¸¶Ä¡¸ç
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Abstract


I. ¼­·Ð
II. ÀÔ¹ý¿¬Çõ ¹× ¹ýÀû ¼ºÁú¿¡ ´ëÇÑ ÀϹÝÀû °ßÇØ
III. °­¿äµÈ ÇàÀ§ÀÇ Á¤´çÈ­ °¡´É¼º¿¡ °üÇÑ ³íÀÇ
IV. ±âÁ¸ÀÇ ³íÀÇ¿¡ ´ëÇÑ Æò°¡ ¹× °á·Ð
V. ¸Î´Â¸»
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I. ¼­·Ð
II. ÀÌ·ÐÀû ³íÀÇ
III. ÀÚ·á ¹× ºÐ¼®¹æ¹ý
IV. ºÐ¼®°á°ú
V. ¿ä¾à ¹× °á·Ð
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I. µé¾î°¡´Â ¸»
II. Çù¹ÚÁËÀÇ º¸È£¹ýÀͰú Çù¹ÚÁËÀÇ ¼ºÁúÀÇ °ü°è
III. Çù¹ÚÁËÀÇ ¼ºÁú
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I. ¼­·Ð
II. ÀÇ·á½ÃÀå¿¡ ´ëÇÑ °æÀï¹ý Àû¿ëÀÇ ½ÇÅÂ
III. ¹Ì±¹ ÀÇ·á½ÃÀåÀÇ ½ÃÀåȹÁ¤
IV. Çѱ¹ ÀÇ·á½ÃÀåÀÇ ½ÃÀåȹÁ¤¿¡¼­ÀÇ ½Ã»çÁ¡
V. °á·Ð
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I. µé¾î°¡¸ç
II. ¿µ±¹¹ý»ó ÇØÀûÇàÀ§ÀÇ °³³ä
III. ÇØÀûÇàÀ§·Î ÀÎÇÑ ¼ÕÇØÀÇ º¸Ç躸»ó°ú °ü·ÃÇÑ ¸î °¡Áö ¹ý·üÀû ¹®Á¦Á¡
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I. »ç¾ÈÀÇ °³¿ä
II. ¼Ò¼ÛÀÇ °æ°ú
III. ´ë»óÆÇ°á
IV. ¿¬±¸
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»ç½ÇÀÇ °³¿ä
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¥². ±Ù´ë±¹°¡, ¸ð°Õ¼Ò, Ű½ÅÀú¿Í ±¹°¡º¸ÈÆ
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¥°. ¹®Á¦ÀÇ Á¦±â
¥±. ´ëºÏÁ¤Ã¥À» µÑ·¯½Ñ ³²³²°¥µîÀÇ ÃßÀÌ¿Í ¾ç»ó
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¥°. Einleitung
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Migration and Rural Depopulation after the German Reunification ? Lessons for the Korean Reunification

2. ¹æ¼ÛÅë½Å½ÉÀÇÀ§¿øÈ¸ °ü·Ã ³í¶õ°ú ÀïÁ¡
3. ¹æ¼ÛÅë½Å½ÉÀÇÀ§¿øÈ¸¸¦ ÇâÇÑ »çȸÀû ¿ä±¸
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4. ¹æ¼ÛÅë½Å ½ÉÀǽýºÅÛ¿¡ ´ëÇÑ Æò°¡
5. ³ª°¡¸ç
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3. ÃⱸÁ¶»çÀÇ °æ¿ì
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¥±. ÀüüÁÖÀÇ, Æø·Â vs ÀÚÀ¯£­¹ÎÁÖÁÖÀÇÀû ´Ù¿øÁÖÀÇ
¥². Áø¸®°¡ ³ÊÈñ¸¦ ÀÚÀ¯ÄÉ Çϸ®¶ó!?
¥³. ·¹´Ñ°ú Á¤Ä¡, ½ÇõÀÇ °á´Ü
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¥±. The Miltonic-Wordsworthian Sonnet
¥². King Lear and Keats¡¯s Poetic Development
¥³. Existential Ability in the Sonnet
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¥±. º»·Ð
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2. ¼±Ç࿬±¸ °íÂû
3. ¿¬±¸ÀÇ ¹æ¹ý
4. °á·Ð ¹× Á¦¾ð
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2. Seoul Korean and Kyungsang Korean
3. Experiment
4. Results and Discussion
5. Conclusion
Works Cited


2. º»·Ð
3. ¸ÎÀ½¸»
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2. »çÁø À̹ÌÁö¿Í Çö½ÇÀÇ °Å¸®°¨
3. »çÁø À̹ÌÁö¸¦ ÅëÇØ µå·¯³½ Áø½Ç
4. »çÁø À̹ÌÁö¸¦ ÅëÇÑ ¿µ¿ø¼ºÀÇ Ãß±¸
5. ¸ÎÀ½¸»
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2. ·Îºó½¼·ù ¼Ò¼³·Î¼­ÀÇ ¡º½Åºñ½º·¯¿î ¼¶¡» Àбâ
3. °úÇй®¸í¿¡ ´ëÇÑ Âù°¡ ȤÀº ºñÆÇ
4. ¼¶ÀÇ ¼ÒÀ¯È­ ȤÀº ½ÇÆÐ
5. ¸Î´Â¸»
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2. ±¸¾î ÇÁ¶û½º¾î¿Í º¯ÀÌÇü
3. Àǹ®±¸Á¶ º¯ÀÌÇü°ú »çȸ-¹®Ã¼Àû °¡Ä¡
4. ¾ð¾îÇÐÀû º¯ÀÌÇü °ü¸®¸¦ À§ÇÑ ±³À°¹ýÀû Àü·«
5. °á·Ð
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Resume


2. Elaboration d'un savoir-faire terminologique
3. Apport des publications terminologiques et linguistiques
4. Effets des avis de la commission de terminologie de l'OQLF
5. Orientation de l'usage
6. Conclusion
Bibliographie
±¹¹®¿ä¾à


2. º»·Ð
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2. ¾ÆÆú¸®³×¸£ Ä®¸®±×¶÷ÀÇ ¹ÌÇÐÀû ºÐ¼®
3. °á·Ð
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2. ´õ À½¿ïÇϰí, ´õ ÀÜÀÎÇϰí, ´õ ¿î¸íÀûÀÎ : ¶ó ¸ð¸£±×¿¡¼­ Æþ³×ÇÁÀÇ ÆÄ»çÁÖ·Î
3. ÀÌÀüÅõ±¸ÀÇ Àå¼Ò : ºÒ·Î´º ½£¿¡¼­ ¸ù¼Ò °ø¿øÀ¸·Î
4. µµ½ÃÀÇ ¾ß¸¸°ú ÀÚ¿¬ÀÇ ±¸¿ø : ¸ù¸¶¸£Æ®¸£ ¾ð´ö¿¡¼­ ÆÄ¸®ÀÇ ¼¾ °­À¸·Î
5. °á·Ð
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2. Çö½Ç, ²Þ°ú ²ÞÀÇ ¿ª¼³
3. ²Þ°ú ÀÚÀ¯
4. ¾î¸¥°ú ¾ÆÀÌÀÇ º¯Áõ¹ý
5. °á·Ð
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2. Æ÷½ºÆ®ÈÞ¸Õ ³íÀÇÀÇ ÀïÁ¡°ú Æ÷½ºÆ®¹Ùµð
3. ¿À¸¦¶ûÀÇ Æ÷½ºÆ®¹Ùµð
4. ³ª°¡¸ç
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2. ½Ä¹ÎÈ­¿Í µ¶¸³
3. ½Ä¹ÎÈ­ÀÇ ÈÄÀ¯Áõ
4. ±¹°¡ °Ç¼³°ú µ¶Àç
5. °á·Ð
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2. Äá°íÀÇ ¾ð¾î»óȲ
3. Äá°ñ¸®ÁòÀÇ À¯Çü ºÐ¼®
4. Äá°ñ¸®Áò, Äá°í»çȸÀÇ °Å¿ï
5. ³ª¿À´Â ¸»
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2. º»·Ð
3. °á·Ð
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2. ÇÁ¶û½º, ±Û·Î¹ú ÇÑ·ùÀÇ °¡´É¼º
3. ¸ÎÀ½¸» : ±Û·Î¹ú ÇÑ·ù¸¦ À§ÇØ
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2. ¿©°¡½Ã°£Áõ°¡¿Í ¹®È­Çâ¼ö
3. ½ºÅ©¸° ¹®È­ÀÇ È®´ë¿¡ µû¸¥ ¹®È­Çâ¼öÀÇ º¯È­
4. ¼¼´ë°£, °èÃþ°£ ¹®È­Çâ¼ö °æÇâÀÇ Â÷ÀÌ¿Í Æ¯¼º
5. ¹®È­Çâ¼ö È®´ë¿Í ¹®È­Á¤Ã¥ ¹æÇâ
6. ³ª°¡´Â ¸»
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ANNEXE


2. ±â¾ï°ü±¤ÀÇ Çü¼º
3. ±â¾ï°ü±¤ÀÇ Àü°³
4. °á·Ð
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2. ÀçÇöÀÇ ¿ª»ç¿Í ȯ»ó
3. Æ÷½ºÆ®¸ð´õ´ÏÁò°ú ȯ»ó
4. ȯ»óÀÇ ¿¬±Ø¼º°ú »çÁø
5. ³ª°¡´Â ±Û
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2. '´ÜÆí¿µÈ­'ÀÇ °³³ä°ú »ç¿ë·Ê
3. ÇÁ¶û½º '´ÜÆí¿µÈ­ÞÈ' °³°ü
4. ÇöÀçÀÇ »óȲ
5. °á·Ð¿¡ ´ë½ÅÇÏ¿© : '´ÜÆí¿µÈ­'ÀÇ °¡´É¼º
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Resume


2. Histoire versus memoire ou la memoire comme complement de l'histoire
3. Un forum et une manifestation artistique : Platform
4. Platform 2008 : Ce qu'un artiste nous montre et nous dit de la gare de seoul
5. La gare renovee : l'art, la culture et la memoire suspendue
6. Conclusion
Bibliographie
±¹¹®¿ä¾à


1. ¼­·Ð
2. ´Ü¾î Ŭ·¯½ºÅ͸µ
3. ´Ü¾î°£ À¯»çµµ ÃøÁ¤
4. Ŭ·¯½ºÅ͸µ ¾Ë°í¸®Áò
5. ½ÇÇè
6. °á°ú ¹× ÇâÈÄ¿¬±¸¹æÇâ
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Abstract
1. ¼­·Ð
2. ´ÙÁß ¿¡ÀÌÀüÆ® ±â¹Ý ½Ã½ºÅÛÀÇ ±âÁ¸ ¿¬±¸
3. MAGS(MultiAgent-based Group Scheduler)ÀÇ ¼³°è
4. ±×·ì ÀÏÁ¤ °ü¸® ½Ã½ºÅÛÀÇ ±¸Çö
5. °á·Ð
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Abstract
1. ¼­·Ð
2. °ü·Ã ¿¬±¸
3. º»·Ð
4. Æò°¡ ¹× ±¸Çö
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Abstract
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¥±. ½ÇÇè 1
¥². ½ÇÇè 2
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¥°. µé¾î°¡´Â ¸»
¥±. ÀϽÉÀÇ À±¸®Çаú ¼ºÂ÷ÀÇ À±¸®ÇÐ
¥². È­ÇØ¿Í Á¶È­ÀÇ À±¸®ÇÐÀ» ÇâÇÏ¿©
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¥°. µé¾î°¡¸ç : Á¤ÀÇÀÇ À̸éµé
¥±. Á¤ÀǷаú À¯ÇÐ ±×¸®°í ¿©¼ºÁÖÀÇ
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1. ¹®Á¦Á¦±â
2. Çì°ÖÀÇ¡º¹ýöÇС»¿¡ ³ªÅ¸³­ ¼ºÀû Â÷ÀÌ¿Í ±Ù´ë ÇÙ°¡Á·ÀÇ À̳ä
3. À̸®°¡·¹ÀÇ ¼ºÀû Â÷ÀÌÀÇ À±¸® : ¿©¼ºÀÇ °èº¸¿Í °¡Á·ÀÇ ¹®¸íÈ­
4. µÑÀÇ »ý¼º: µÎ ÁÖüÀÇ º¯Áõ¹ý
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µé¾î°¡´Â ¸»
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¥±. ¿©¼ºÁÖÀÇ Á¤Ä¡ÇÐÀÇ Àç±ÕÇüÈ­ Àü·«
¥². ¼­±¸ ¿¡ÄÚÆä¹Ì´ÏÁòÀÇ Àû¿ë°¡´É¼º°ú ÇѰè
³ª°¡´Â ¸» : ¾ÕÀ¸·ÎÀÇ °úÁ¦
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1. ¸Þ¸¦·Î-ÆþƼÀÇ ¡®¸»ÇÏ´Â ¸ö(corps parlant)¡¯°ú Áõ»ó
2. ¶óIJÀÇ È÷½ºÅ׸® ±¸Á¶ ºÐ¼® : ÇÁ·ÎÀÌÆ®ÀÇ Á¤À°Á¡ ¿©ÀÎÀÇ ¿¹
°á·ÐÀ» ´ë½ÅÇÏ¿© : È÷½ºÅ׸®°¡ ´øÁö´Â ±Ùº» ¹°À½, ¿©¼º¼º
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1. µé¾î°¡´Â ¸»
2. ³²¼ºµéÀÇ ÆÐ¼Ç»ç¶û
3. Ä­Æ®¿Í Ű¿¡¸£Äɰí¾î : ¡®º¸´Â ÀÚ¡¯·Î¼­ÀÇ ³²¼º°ú ¡®º¸ÀÌ´Â ÀÚ¡¯·Î¼­ÀÇ ¿©¼º
4. ¸Þ¸¦·Î-ÆþƼÀÇ ½Ã°¢Àû/Ã˰¢Àû ¸ö : º¸´Â ÀÚ¿Í º¸ÀÌ´Â ÀÚ
5. º¹½Ä : ¡®º¸´ÂÀÚ¡¯¿Í ¡®º¸ÀÌ´ÂÀÚ¡¯ÀÇÀÏ»óÀûÇü½Ä
6. º¹½Ä : ¸öÀ» ÅëÇØ ±Ç·ÂÀÌ Çà»çµÇ´Â Çü½Ä
7. ³ª°¡¸ç
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1. ¼­·Ð
2. SURF ¿Í LK ¾Ë°í¸®Áò ¿¬±¸
3. º´·Ä ó¸® ±â¼úÀ» ÀÌ¿ëÇÑ SURF ¿Í LK º´ÇÕ
4. ½ÇÇè ¹× °á°ú °íÂû
5. °á·Ð
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1. Introduction
2. System Description
3. Priority Queue
4. Practical Evaluation / Experimental Work
5. Conclusion
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1. ¼­·Ð
2. ¼ÒÇü dz·Â¹ßÀü ½Ã½ºÅÛ
3. ¼ÒÇü dz·Â¹ßÀü±â¿¡ »ç¿ëµÇ´Â ÃÖ´ë Àü·ÂÁ¡ ÃßÁ¾ ¾Ë°í¸®Áò
4. ¼ÒÇü dz·Â¹ßÀü±â °æ³âÈ­¿¡ Àû¿ë °¡´ÉÇÑ MPPT ¾Ë°í¸®Áò
5. ½Ã¹Ä·¹ÀÌ¼Ç °íÂû
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1. ¼­·Ð
II. ¿¬¸¶¸Ó½Å ½Ã½ºÅÛ ±¸¼º
III. ¸ðÅÍÁ¦¾î±â¼³°è
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1. ¼­·Ð
2. Àΰø½Å°æ¸Á ±â¹ÝÀÇ ¿¬±¸
3. À¯Àü ¾Ë°í¸®Áò ±â¹ÝÀÇ ¿¬±¸
4. ±× ¿ÜÀÇ ±â¹ýÀ» ±â¹ÝÀ¸·Î ÇÑ ¿¬±¸
5. °á·Ð ¹× ÇâÈÄ ¿¬±¸
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¥². µµ»êÀÇ Á¤Ä¡»ç»ó°ú ¹ÎÁÖÁÖÀÇ
¥³. ¹ÎÁÖÁÖÀÇ ½Ã°¢¿¡ º» µµ»ê»ç»ó
¥³. µµ»êÀÇ ±³À°»ç»ó°ú ¹ÎÁÖÁÖÀÇ
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2. ISD¿¡ ´ëÇÑ ÀïÁ¡ °ËÅä
3. ISD¿¡ ´ëºñÇÑ ´ëÃ¥°ú ÇÑ¡¤¹Ì FTA ºñÁØ
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3. ISD´Â ¹Ì±¹¿¡ À¯¸®ÇѰ¡?
4. ±¹°¡°¡ ISD·Î ¹è»óÀ» ÇÏ´Â °æ¿ì´Â?
5. Á¤ºÎÀÇ Á¤´çÇÑ ±ÔÁ¦±ÇÇÑÀÌ ISD·Î »ó½ÇµÇ´Â°¡?
6. ISD´Â »ç¹ýÁÖ±ÇÀ» Ä§ÇØÇϴ°¡?
7. ISD¸¦ ¹èÁ¦ÇÏ´Â Ãß°¡Çù»óÀÌ °¡´ÉÇѰ¡?


2. ÇÑ¿ì »çÀ°µÎ¼ö ¾ÈÁ¤±â¿¡ Á¢±Ù Áß
3. ÃÖ±Ù ÀÔ½ÄÀÇÇ⠱޳ð¢
4. ÇÑ¿ì»ê¾÷ Àü¸Á: »õ·Î¿î Ãæ°ÝÀ¸·Î ¾Ï¼ÒµµÃàÀÌ ±ÞÁõÇÏÁö ¾ÊÀ» °æ¿ì
5. Çö¸íÇÑ ÇÑ¿ìÁ¤Ã¥, ¹ø½Ä ¹× ÀÔ½ÄÀÇ¿åÀÇ °úµµÇÑ ³Ã°¢ ¹æÁö¿¡ ÁßÁ¡
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3. ÀÇ¹Ì Â÷ÀÌ ¾îÈÖÀÇ ÀÇ»ç¼ÒÅë °¡´É¼º
4. °á·Ð
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4.¡ºÁ¶¼±¾î¹®Àå·Ð¡»ÀÇ ¹®¹ý ±â¼ú»ó Ư¡
5. ¸ÎÀ½¸»
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2. Áßµ¿ ºÐÀïÀÇ ±â·Ï : ¡º¾ÆºÎ ¾Ë¸®, Á×Áö ¸¶¡»
3. ÇöÁö ¹®ÀεéÀÇ ³»¸éÀû °í³ú :¡ºÆÈ·¹½ºÅ¸ÀÎÀÇ ´«¹°¡»
4. ¹®ÇÐÀ» ÅëÇÑ ¼ÒÅë :¡ºÆÈ·¹½ºÅ¸Àΰú Çѱ¹ÀÇ ´ëÈ­¡»
5. ¸¶¹«¸® : ¡ºÈ²±Ý ÁöºØ¡»¿¡ ´Ù°¡°¡±â À§ÇÏ¿©
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2. DMZ °ü·Ã ¹®È­ÄÜÅÙÃ÷ ÇöȲ
3. DMZ °ü·Ã ¹®È­ÄÜÅÙÃ÷ Á¦¾È
4. °á·Ð
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1. ¸Ó¸®¸»
2. Á¶»ç Áö¿ªÀÇ »çȸ?¹®È­Àû ¹è°æ°ú Á¶»ç ¹æ¹ý
3. Á¶»ç °á°ú¿Í ±× ÇØ¼®
4. ¸ÎÀ½¸»
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2. ¹ß±¼ ÀÚ·á ¼Ò°³
3. ±âÁ¸ ¼­»ç ¾ç½Ä°ú ´ëºñµÇ´Â Ư¼º
4. ¼­»ç ¾ç½ÄÀÇ È¥Àç¿Í º¯¿ë ¾ç»ó
5. ¼­¼ú ¹æ¹ýÀÇ ´Ù¾çÈ­°¡ Áö´Ñ ÀÇÀÇ
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2. ¡®¼Ò³â¡¯°ú ¡®¾ÆÈñ¡¯ Ç¥»óÀÇ ºÐÈ­
3. ¡®¾ÆÈñ¡¯ Ç¥»óÀÇ Àüµµ¼º°ú Ãß»ó¼º
4. ¾Æµ¿ ¼­»ç·Î À籸¼ºµÇ±â
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2. ¡®»ç¶ûÀ» ¸¸µå´Â ±â¼ú¡¯À̶ó´Â Çٽɾî¿Í ¹ßÈ­ÀÇ ÀüȯÁ¡
3. ¸®µëÀÇ ¿ä¼Òµé
4. º¯ÁֵǴ °Íµé : Çü½Ä£­ÀǹÌ(forme£­sens)
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2. Ã߸®Àû ±¸Á¶ÀÇ Àǵµ
3. ÁËÀǽÄÀÇ ¿ø»ó(ê«ß¿)À¸·Î¼­ÀÇ Åä³¢ À̾߱â
4. ºÒ¸éÁõÀû ¿î¸íÀÇ ¿ø»ó(ê«ß¿)À¸·Î¼­ÀÇ Àå°© ½Ç¿À¶ó±â
5. »ýÀ» ȸ°íÇÏ´Â ¼¼ °¡Áö ÀåÄ¡ £­ â³àÀÇ Àλý°ü, ´ã¹è, ¿ôÀ½
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3. ´Ù¹®È­ °øµ¿Ã¼ÀÇ ½ÇÇö°ú ±× °¡´É¼º
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3. Àι®ÇÐÀÇ º¸Æí¼ºÀº °è·®È­ÀÇ º¸Æí¼º°ú ±¸ºÐµÇ¾î¾ß ÇÑ´Ù
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3. ¡º¿À¸®¿£Å»¸®Áò¡»¿¡ °üÇÑ Ó¨ßÌ¡¢
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4. ¿À¸®¿£Å»¸®Áò°ú ¹®È­¹ÎÁ·ÁÖÀÇ
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2. ÀçÇö ¸ÅüÀÇ ¿ª¼³Àû ±â´É
3. »çÀû °ü°è¿Í °øÀû °ü°è
4. ½ÇÀç¿Í ÀçÇöÀ» ¸»Çϱâ¿Í ³îÀÌÇϱâ
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3. ¡®Å¹Àü¡¯ ¾ç½ÄÀÇ º¯¿ë°ú Àڱ⠰´°üÈ­ ±â¹ýÀÇ Ã¢Ãâ
4. µ¿¾ç °íÀüÀÇ »ðÀÔ°ú »óÈ£ÅØ½ºÆ®¼ºÀÇ ±âȹ
5. ¡®¾ß´ã¡¯ ¾ç½ÄÀÇ ¹ß°ß°ú ¿ª»ç¡®¼Ò¼³¡¯·ÎÀÇ Àüȯ
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2. ÇǽĹÎÁö µµ½Ã ¡®ÌÈàò¡¯°ú ¡®ÌÈàòìÑ¡¯ ì°ßÕ
3. ¡®à÷ô¹¡¯À» ¹Ù¶óº¸´Â ì°ßÕ ½Ã¼±ÀÇ À§°è±¸Á¶
4. ¡®ÔÔÌÈ¡¯À» ¹Ù¶óº¸´Â ì°ßÕ ½Ã¼±ÀÇ À§°è±¸Á¶
5. °á¾î


2. ³óÃÌ °øµ¿Ã¼¿¡ ´ëÇÑ ³«¿øÀÇ½Ä ¡¸úÁáþ¡¹ÀÇ °æ¿ì
3. ÌÈԴüÇèÀÌ °¡Á®¿Â Çö½ÇÀνÄÀÇ º¯È­; ¡¸äåô¹¡¹°ú ¡¸†Þ´Ï¾àÀÌ ±¸Àý¡¹ÀÇ °æ¿ì
4. ½Ä¹ÎÁö Áö½ÄÀÎÀÇ °¥µîÇÏ´Â ÀÚÀǽÄ; ¡¸ÍºúÁ¡¹ÀÇ °æ¿ì
5. ¸ÎÀ½¸»






¥±. The Justice of the Peace in the French period in the Netherlands
¥². The Introduction of the codification and French Judicial organization
¥³. How is the Dutch Modern Judiciary organized?
¥´. Conclusion
Reference
¡´±¹¹®ÃÊ·Ï¡µ


¥°. Introduction
¥±. The Creation and Development of Partnerhip in Private Law Environment in China
¥². The Creation and Structure of Chinese Partnership Tax Law
¥³. The Issue of Partnership Law System -Focus on The Theory of ¡°Fiscally Transparent Entity¡± and ¡°Special Allocation¡± Rules
¥´. Conclusion
Reference
¡´±¹¹®ÃÊ·Ï¡µ


¥°. ¼­·Ð
¥±. ´ë»óû±¸±ÇÀÇ ÀϹݷÐ
¥². ¿ì¸® ¹Î¹ý»ó ´ë»óû±¸±Ç¿¡ °üÇÑ Çм³ÀÇ °ËÅä
¥³. ¿ì¸® ¹Î¹ý»ó ´ë»óû±¸±ÇÀÇ ÇØ¼®Àû ÀÎÁ¤¿¡ µû¸¥ ¹®Á¦Á¡
¥´. °á·Ð
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¥°. µé¾î°¡´Â ¸»
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¥². Çö ¹Î¹ý ³íÀÇ¿¡¼­ÀÇ ¹®Á¦ »óȲ°ú ÇØ°áÃ¥ ¸ð»ö
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¡´Abstract¡µ



GOVERNMENT¡¯S ROLE
A MATTER OF FUTURE SURVIVAL


PERCEPTION AND REALITY
FEMALE CULTURE


ARE WE DOING ANY GOOD?
A SIAN EFFORTS
GOING FARTHER


THE ¡®OTHER WOMAN¡¯ ACROSS THE BORDER
NO GREAT EXPECTATIONS - WOMEN¡¯S SEX LIVES
LOVE OR MONEY? WE WANT BOTH!
REWRITING SCRIPTS A CROSS ASIA
REFERENCES


GOING BEYOND POLITICS
EMPOWERING THE ALEEMAT
NOORUS SALAM: THE LIGHT OF PEACE


ENSURING TRANSPARENCY IN AID DISTRIBUTION
THE TASKS AHEAD
THE HUNGER OF CHILDREN



PHASE 1: NUCLEAR MISSILE PROGRAM
FUEL-CYCLE LINKAGE
¡®UNGUIDED ROCKETS¡¯
PHASE 2: REACTIVATING
KEEPING THE OPTION OPEN
ENTER CHUN
LESSONS FOR TODAY


THE RETURN OF THAKSINOMICS
DOES AGRICULTURE BENEFIT?
THE FAULTY PRICE SCHEME


DIPLOMATIC DRAMA
CENTER STAGE
THE NEXT ACT


A NEW ERA IN TIES
THE CHINA CONUNDRUM
SINO-JAPANESE SKIRMISHES
INDIA¡¯S IMPORTANCE FOR JAPAN
INDIA¡¯S IMPROVING TIES WITH THE US
INDIA AND AUSTRALIA GET CLOSEAGAIN
IS A QUADRILATERAL SECURITY ARCHITECTURE FEASIBLE?



NEW CHIEF ROLES SMERGE
SEEKING OUT PROJECT DIRECTORS
THE TALENT CHALIENGE


A BROADER VIEW
SENSE AND SECURITY


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References
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Reference
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2. ¹®È­Àç ÁöÁ¤À» À§ÇÑ Á¶»ç
3. ¹«Çü¹®È­Àç ò¦ïÒ
4. ¿À´ÃÀÇ °­¸ª ´Ü¿ÀÀç


2. Á¦1±â ¿¬±¸Çü¼º±â(1960~1969)
3. Á¦2±â ¿¬±¸¹ßÀü±â(1970~1979)
4. Á¦4±â ¿¬±¸³­¼÷±â(1980~ÇöÀç)


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2. ÓÞμç­ÏÐÞÔàò×Ìð® õæÙþ
3. ÓÞμç­ÏÐÞÔåüàò×Ìð® õæÙþ
4. çÊãêð® õæÙþ
5. ðÈîõð® õæÙþ
6. áêãêð® õæÙþ


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3. ´ë°ü»ê½Å ±èÀ¯½Å ½ÅÈ­
4. °­¸ª´Ü¿ÀÁ¦ ±Ù¿ø¼³È­(½ÅÈ­)ÀÇ Á¦ÀÇÀû ±â´É


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3. °­¸ª ´Ü¿À¿Í ±º¿õ¤ýÀå¼ö±Â
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3. ´Ü¿ÀÀÇ ±â¿øÀǷʼº°ú ¿Àµ¶¶¼±â
4. ´Ü¿À ¼¼½Ã³îÀÌ °ü·Ã ¹Î¿äÀÇ àõë´ýôàõ
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2. ˰×ÕÓ®çíð® ð®ÖÉ ãÁÀÇ ð®Úª
3. ð®ÚªÀÇ òçàâ ï½ó­
4. ˰×ÕÓ®çíð® úÌÚ·ÜåïÐ
5. ð®ÖÉ ý­ÀÇ ð®Úª
6. ìíÜâÀÇ °æ¿ì : ð¡Ëªúãß²Óöã¼ß²ÓöÓÞÞäÀÇ Ó®çíð®
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2. øÁå½ÀÇ Ó®çííÚκ
3. øÁå½Ó®çí÷®ã­Ó¥
4. ìíÜâÀÇ °æ¿ì
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2. À̾߱â·ÐÀÇ »õ·Î¿î ¼³°ú ÀüÅë
3. ³ë·¡·ÐÀÇ ³ë·¡ ºÎ¸£±â¿Í ³ë·¡ µû¶óÇϱâ
4. ÁöÅ´ÀÌ·ÐÀÇ ¹Î¼Ó½Å¾Ó°ú °­¿øµµ
5. ³îÀÌ·ÐÀÇ ¹Î¼Ó¿¬Èñ¿Í ¿øÇü¼º
6. ö°¥ÀÌ·ÐÀÇ ¼¼½ÃÃàÁ¦¿Í »ý¾÷
7. ¸¶´ç·ÐÀÇ ¹Î¼ÓÇöÀå°ú ½À¼Ó
8. ¾î¿ï¸²·ÐÀÇ ¹®Çаú Áö¿ª¹®È­
9. ÀåÁ¤·æÀÇ ôèãæÐÎͯ¿Í Àü¸Á


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A Comparative Study on The Criminal punishment system of Korea and Japan by The Occupational Safety and Health Act

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The Influence and Prospect of the Supreme People¡¯s Court of China Marriage Law¡¯s Judicial Interpretation(3)

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¥±. Bribery Act 2010ÀÇ °³¿ä
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¥±. Background of the Discussion
¥². The Business Judgment Rule
¥³. The ¡°Intermediate (Enhanced) Scrutiny¡± Framework¡ªJudicial Review of Defensive Tactics to Hostile Takeovers
¥´. The ¡°Strict Scrutiny¡± Framework¡ªJudicial Protection of Shareholder Voting Rights
¥µ. The ¡°Entire Fairness¡± Framework
¥¶. Conclusion
REFERENCES
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¥°. µé¾î°¡¸ç
¥±. ±³Åë¹ý±Ô À§¹ÝÂ÷·® ¿îÀüÀÚ¿¡ ´ëÇÑ °æÂûÀÇ Åë°íóºÐ ÇöȲ
¥². ±³Åë¹ý±Ô À§¹ÝÂ÷·® ¿îÀüÀÚ¿¡ ´ëÇÑ °æÂûÀÇ Åë°íóºÐ
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¥°. ¼­·Ð
¥±. ä±Çµî±â´ãº¸±ÇÀÇ ÀÇÀÇ¿Í ¹üÀ§
¥². ä±Çµî±â´ãº¸±ÇÀÇ È¿·Â
¥³. ä±Çµî±â´ãº¸±ÇÀÇ ½ÇÇà
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¥°. ¼­
¥±. °è¾àÀÇ ¼º¸³¿ä°Ç°ú È¿·Â¿ä°Ç
¥². °è¾àÀÇ È¿·Â¿ä°Ç
¥³. °á
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¥°. ¼­¼³
¥±. ÇÁ¶û½º¡¤µ¶ÀÏ¡¤¿µ±¹¿¡ À־ »çÁ¤º¯°æÀÇ ¿øÄ¢
¥². ±¹Á¦°è¾à±Ô¹ü¿¡ À־ »çÁ¤º¯°æÀÇ ¿øÄ¢
¥³. ÀϺ»¹Î¹ý °³Á¤ÀÛ¾÷¿¡ À־ »çÁ¤º¯°æÀÇ ¿øÄ¢
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¥°. ¼­·Ð
¥±. ´ë»óÆÇ°á
¥². ÀϺ»¿¡¼­ÀÇ ´ë¸®¸ð¿¡ °üÇÑ ³íÀÇ
¥³. º» ÆÇ°áÀÇ ÀÇÀÇ
¥´. ¿ì¸®³ª¶ó¿¡ÀÇ ½Ã»çÁ¡
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¥°. ¼­·Ð
¥±. ¼®¸í±ÇÀÇ ÇѰè
¥². Àû±ØÀû ¼®¸í±Ç
¥³. °á·Ð
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¥°. ¼­·Ð
¥±. ½Â³«ÀÇ È¿·Â¹ß»ý½Ã±â
¥². Åë½Å±â¼úÀÇ Áøº¸·Î ÀÎÇÑ ¼ø°£ÀûÀÎ ÀÇ»ç¼ÒÅë°ú µµ´ÞÁÖÀÇ
¥³. Àç·¡½Ä ¿ìÆíÀ» ÅëÇÑ ÀÇ»ç¼ÒÅë°ú µµ´ÞÁÖÀÇ
¥´. °á·Ð
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¥°. ¼­·Ð
¥±. ¸ðºùÀÇ °³³ä
¥². ¸ðºùÀÇ ±¸¼º¿ä°Ç
¥³. ¸ðºù¿¡ ´ëÇÑ ¹ýÀû Ã¥ÀÓ
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¥°. ¹®Á¦ÀÇ Á¦±â
¥±. ÀÔ¹ýÇÐ Ãø¸é¿¡¼­ º» µ¶Á¡±ÔÁ¦¹ýÀÇ ¸ñÀûÁ¶Ç×
¥². µ¶Á¡±ÔÁ¦¹ýÀÇ ¸ñÀû¿¡ °üÇÑ ³íÀÇÀÇ ¹è°æ°ú À̳äÀû ±âÃÊ
¥³. À¯»ç ÀÔ¹ý·Ê(ÀϺ»ÀÇ ÞçîÜÔ¼ï¿Ð×ò­Ûö)¿ÍÀÇ ºñ±³ºÐ¼®
¥´. ÇöÇà ±ÔÁ¤ÀÇ ÇØ¼®·Ð ¹× ÀÔ¹ý·ÐÀû Àç°íÀÇ ¹æÇâ
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Abstract


¥°. Introduction
¥±. Globalization and its Implications in Competition Policy
¥². Globalization and its Impact: Focusing on the Roleof Global Governance
¥³. Toward Global Governance in Competition Law
¥´. Conclusion
Bibliography
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¥±. ÇÏÆ®ÀÇ °³¹æÀû ±¸Á¶ÀÇ °³³ä
¥². ÇÏÆ®ÀÇ °³¹æÀû ±¸Á¶¿¡ ´ëÇÑ Æò°¡
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¥°. µé¾î°¡¸ç
¥±. ÀϺ» ¹ýÁ¶Àμ±¹ßÀÇ ÇöȲ°ú °úÁ¦
¥². ¿ì¸® ·Î½ºÄðÀÇ ¹ßÀü¹æÇâ
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¿©ÇàÀÚ, ¿©ÇàÁö, ¿©Çà»çÀÇ ±ÕµîÇÑ Á¶È­
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II ÐÎÒ´ªÎü»ÌÑÍëúªáÍáè
III. ìíÜâªÎü»ÌÑÍëúªáÍáèªÎ÷å?
IV. ðûªïªêªË?íѪµªìª¿Î¤ð¹
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II. ÃÖ±ÙÀÇ È¯°æ°øÇؼҼÛ
III. ÀϺ»ÀÇ È¯°æ°øÇؼҼÛÀÇ Æ¯Â¡
IV. °á·Ð - ³²°ÜÁø °úÁ¦


II. ȯ°æ¹Î»ç¼Ò¼ÛÀÇ ÀÇÀÇ
III. ȯ°æ¹Î»ç¼Ò¼ÛÀÇ ÃÖ±Ù µ¿Çâ°ú ÀïÁ¡
IV. ȯ°æ¹Î»ç¼Ò¼ÛÀÇ ÇâÈİúÁ¦
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II. ȯ°æ¹ý ÀϹÝ
III. ȯ°æÇàÁ¤¼Ò¼ÛÀÇ Àû¹ý¿ä°Ç
IV. ȯ°æº¸È£¸¦ À§ÇÑ ÇàÁ¤ÀÛ¿ë
V. ÇâÈÄ È¯°æÇàÁ¤¼Ò¼ÛÀÇ Àü¸Á°ú °úÁ¦
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II. ¿øÀÚ·Î ¼³Ä¡Çã°¡Ãë¼Ò ¼Ò¼Û
III. ¿øÀÚ·Î °Ç¼³±ÝÁö ¼Ò¼Û
IV. ¿øÀÚ·Î °¡µ¿ÁßÁö ¼Ò¼Û
V. ÇÙ¿¬·á °ü·Ã ¼Ò¼Û
VI. Áֹΰǰ­ÇÇÇØ ¼Ò¼Û
VII. ¸ÎÀ½¸»
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A Movement of Cases for Nuclear Plants in Japan

II. ¹ýÁ¤¿Ü¼¼
III. Áö¹æÀÚÄ¡´ÜüÀÇ È¯°æÁ¤Ã¥°ú Áö¹æÈ¯°æ¼¼
IV. ¹ýÁ¤¿Ü¼¼·Î¼­ÀÇ Áö¹æÈ¯°æ¼¼ÀÇ ÇöȲ
V. Áö¹æÈ¯°æ¼¼·Î¼­ÀÇ Åº¼Ò¼¼
VI. °á·Ð-¿ì¸®³ª¶ó¿¡ÀÇ ½Ã»çÁ¡À» Æ÷ÇÔÇÏ¿©
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1.µé¾î¼­¸ç
2. ¡º½Ã°æ¡»¡¤¡º¼­°æ¡»¡¤¡º³í¾î¡»¿¡¼­ ¡®¹Ý(Úã)¡¯°ú ¡®¼º(àý)¡¯ÀÇ ¿ë¹ý
3. ¡º¹¬ÀÚ¡»¿¡ ³ªÅ¸³­ ¡®¹Ý(Úã)¡¯ÀÇ »õ·Î¿î ¿ë¹ý°ú ÀǹÌ
4. ¡º¸ÍÀÚ¡»¿¡¼­ ¡®¹Ý(Úã)¡¯ÀÇ ¿ë¹ý°ú ÀÌ·ÐÀû ÀǹÌ
5. ¡º¼øÀÚ¡», ¡®¹Ý(Úã)¡¯¿¡¼­ ¡®¼º(àý)¡¯À¸·Î Àüȯ
6. °á·Ð
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1. ¼­·Ð
2. À¯ÇÐÀû ¹¬¼ö¿¡¼­ °æÇèÀû ÀǽÉÀ¸·Î
3. ºÐ¿­µÈ ÀÚ¾Æ
4. ÈûÀ» °¡Áø º»¿øÀ» À§ÇÏ¿©
5. °á·Ð
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1. ¹®Á¦Á¦±â
2. ¿¬±¸»ç Á¤¸®: ¡®Á¶¼±ÇС¯ÀÇ Á¤¸³°ú ±× Á¤Ã¼
3. ¼¼°è Áú¼­: õÇÏ(°¡Á·) ´ë ±¹°¡¿Í ¹ÎÁ·
4. µµ´ö: ½Ãºñ ´ë ÀÌÇØ
5. º»Áú: ´ëÀΰú ¼ÒÀÎ ´ë ´ë¾Æ¿Í ¼Ò¾Æ
6. ¸ÎÀ½¸»: ½ÇÆÐÀÇ Á¸Àç·Ð
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Abstract


¼­·Ð
1. Àý´ëÀû ½Ã°£·Ð°ú °ü°èÀû ½Ã°£·Ð
2. Àý´ëÀû ½Ã°£·ÐÀ» ºÎÁ¤Çϱâ À§ÇÑ ¶óÀÌÇÁ´ÏÃ÷ÀÇ ³íº¯ : ÃæºÐÀÌÀ¯À²
3. ¶óÀÌÇÁ´ÏÃ÷ÀÇ Á¸Àç·Ð
4. ½Ã°è¶õ ¹«¾ùÀΰ¡?
5. ½Ã°è ¸¸µé±â
6. Áֱ⼺°ú ½Ã°£
°á·Ð
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Abstract


1. ¼­·Ð
2. º¸¼öÁÖÀÇÀÇ Àǹ̵é
3. ÈâÀÇ Á¤Ä¡Ã¶Çаú º¸¼öÀû ÇÔÃàµé
4. °á¾î
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Abstract


1. µé¾î°¡¸ç
2. ·ÎƼÀÇ µàÀÌ ÇØ¼®
3. ·ÎƼÀÇ µàÀÌ ÇØ¼®¿¡ ´ëÇÑ ºñÆÇ
4. ·ÎƼÀÇ ÅØ½ºÆ®ÁÖÀÇ¿Í ¸ÞŸöÇÐ
5. ¸ÎÀ½¸»
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Abstract


1. µé¾î°¡¸ç
2. Á¸ÀçÀڷμ­ÀÇ ÇöÁ¸ÀçÀÇ ÇöÁ¸ÀçÀÇ Á¸Àç: ÀÚ¾Æ¿Í ÀÚ±âÀÇ ±¸ºÐ
3. ÇöÁ¸ÀçÀÇ ÀÚ±âÀÌÇØ¿Í °¡´É¼ºÀÇ ¹®Á¦
4. ºÒ°¡´É¼ºÀ¸·Î¼­ÀÇ °¡´É¼ºÀÎ Á×À½ÀÇ °¡´É¼º
5. ÇöÁ¸Àç ½ÇÁ¸ÀÇ º»·¡¼º/ºñº»·¡¼º°ú Á×À½ÀÇ ¹®Á¦
6. ÇöÁ¸ÀçÀÇ Á×À½À¸·ÎÀÇ ¼±±¸¿Í ½Ã°£¼ºÀÇ ¹®Á¦
7. ÇÏÀ̵¥°Å¿¡°Ô¼­ Á×À½ÀÇ ÀÇÀÇ: Á¤ÃÊ¿Í ÀÚÀ¯
Âü°í¹®Çå
Abstract


1. Introduction
2. The Free Will Debate
3. Experimental Philosophy and Free Will
4. Methodological and Interpretative Problems
5. Philosophical Implications
6. Conclusion
References
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Âü°í¹®Çå
Abstract


1. ÆÛ¸ÓÅÏÀÇ Á÷Á¢Àû ¼÷Áö ÀÌ·Ð
2. ¹ö±×¸¸ÀÇ ¹Ý·Ð
3. ¹ö±×¸¸ÀÇ ¹Ý·ÐÀº Ÿ´çÇѰ¡?
4. Á÷Á¢Àû ¼÷Áö ÀÌ·ÐÀÇ º¸¿ÏÀû ÇØ¼®
5. ¸ÎÀ½¸»
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Abstract


1. µé¾î°¡´Â ¸»
2. ´öÀ±¸®¿¡ ´ëÇÑ »óȲÁÖÀÇÀû ºñÆÇ
3. »óȲÁÖÀÇÀû µµÀü¿¡ ´ëÇÑ ´öÀ±¸®Àû ´ëÀÀ°ú ½ÇõÀû ÁöÇý
4. ½ÇõÀû ÁöÇý¸¦ ÅëÇÑ ´ëÀÀÀÇ ÇѰè
5. ³ª¿À´Â ¸»
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Abstract


1. µé¾î°¡´Â ¸»
2. µµ´ö¿¡ ´ëÇÑ ÁøÈ­·ÐÀû ޱ¸ÀÇ ÇÑ ´ë¾ÈÀ¸·Î¼­ÀÇ µµ´ö ¹ß´Þ»çÀû Á¢±Ù
3. µµ´ö ¹ß´Þ»çÀûÀÎ Ãø¸é¿¡¼­ º» ·çÁîÀÇ ¸ÞŸ À±¸® ÀÌ·ÐÀÌ °®´Â ¹®Á¦Á¡
4. ¹«¾îÀÇ Á÷°¢ÁÖÀÇ¿Í µµ´ö ¹ß´Þ»çÀûÀÎ Á¢±Ù
5. µµ´ö ½ÇÀç·Ð°ú µµ´ö ¹ß´Þ»çÀûÀÎ Á¢±Ù
6. µ¿±â ºÎ¿©·Â¿¡ °üÇÑ µµ´ö ¹ß´Þ»çÀûÀÎ Á¢±Ù°ú ¸ÞŸ À±¸® ÀÌ·Ðµé °£ÀÇ ºñ±³
7. ³ª°¡´Â ¸»
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Abstract


1. Çö´ë ¹Ì±¹ ÈæÀÎ ¹ÎÁ·ÁÖÀÇ, ¼ºÂ÷º°ÁÖÀÇ ³íÀï, ÈæÀο©¼ºÀÛ°¡µé
2. ±Û·Î¸®¾Æ ³×ÀÏ·¯: ÈæÀο©¼º¹®ÇÐÀÇ °³ÀÔ
3. °æÁ¦Àû ¹ÎÁ·ÁÖÀÇ ±âȹÀÇ °¡´É¼º°ú ÇѰè
4. ¿©¼º°ú ¼Ò¼öÀÚÀÇ À̾߱â: ÀÚ±â Àç¹ß°ßÀ¸·Î¼­ ¿ª»ç
Âü°í¹®Çå
Abstract


1. ¹®Á¦Á¦±â
2. ÆòµîÀÇ ½Ã°¢
3. Â÷ÀÌÀÇ ½Ã°¢
4. °°À½°ú ´Ù¸§ÀÇ À̺йýÀû ³íÀǸ¦ ³Ñ¾î¼­¼­: ´Ù¾ç¼ºÀÇ ½Ã°¢
5. °á·Ð°ú ÇÔÀÇ
Âü°í¹®Çå
Abstract


1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¼³°è ¹× ¿¬±¸¹æ¹ý
4. ºÐ¼®°á°ú
5. °á·Ð
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Abstract


1. ¼­·Ð
2. ÀÌ·ÐÀû ¹è°æ
3. ¿¬±¸¹æ¹ý
4. ¿¬±¸°á°ú
5. °á·Ð ¹× ÇÔÀÇ
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Abstract


1. ¹®Á¦Á¦±â
2. ¹®Çå°íÂû
3. ¿¬±¸ºÐ¼® Ʋ
4. ºÐ¼®°á°ú
5. ¿ä¾à ¹× ³íÀÇ
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1. µé¾î°¡´Â ¸»
2. ¿¬±¸¹æ¹ý
3. ÀÌÁÖ¿Í Á¤Âø°úÁ¤¿¡¼­ÀÇ À̼º °ü°è
4. À̼º °ü°è¸¦ ÅëÇØº» Á¤Ã¼¼º º¯È­°úÁ¤
5. °ø°£º° ÀÌÁÖ°æÇè°ú Á¤Ã¼¼º º¯È­°úÁ¤
6. ³ª¿À´Â ¸»
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NEW MATERIALS
NEW FURNITURE
INSTALLATION
AWARD
TREND
NEW ARCHITECTURE
ISSUE
COLOR
BOOKS
EXHIBITION


Restaurant for Cleary Gottlieb
The Place Flagship Store




INTERVIEW



Room Room
Acrylic House
Love House








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¥±. WTO ¿ø»êÁö ±ÔÁ¤ ÇùÁ¤
¥². ÅëÀÏ¿ø»êÁö ±ÔÁ¤ Çù»ó
¥´. °á·Ð
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¥±. ¼è°í±â ºÐÀï (1) - ¹Ì±¹, È£ÁÖ, ´ºÁú·£µå Á¦¼Ò
¥². ¼è°í±â ºÐÀï (2) - ¹Ì±¹, È£ÁÖ Á¦¼Ò
¥³. ¼è°í±â ºÐÀï (3) - ij³ª´Ù Á¦¼Ò
¥´. °á·Ð
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Abstracts


¥±. Body
¥². Conclusion
References
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Abstracts


¥±. ¹Î°£Ç¥ÁØÀÇ ÁÖ¿äÀïÁ¡ ¹× ȸ¿ø±¹ÀÔÀå
¥². WTO/SPSÁ¤·ÊȸÀÇ Áֿ䵿Çâ ¹× ³íÀǰá°ú
¥³. ¹Î°£Ç¥Áذú ½Äǰ¾ÈÀü°úÀÇ °ü°è
¥´. ¹Î°£Ç¥Áذú ½ÃÀåÁ¢±Ù°úÀÇ °ü°è
VI. °á·Ð
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Abstracts


¥±. WTO º¸º¹Á¶Ä¡Á¦µµÀÇ ÀýÂ÷¿Í ¹®Á¦Á¡
¥². WTO º¸º¹Á¶Ä¡Á¦µµÀÇ °³¼±³íÀÇ
¥³. ±âŸ °³¼±³íÀÇ
¥´. °á·Ð
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¥±. ÁÖ¿ä MEAs»óÀÇ ¹«¿ª±ÔÁ¦Á¶Ä¡(trade-relatedmeasures)ÀÇ Çʿ伺°ú Á¾·ù
¥². MEAs¿Í WTO ±Ô¹ü Ãæµ¹ ¿ÏÈ­¿¡ ´ëÇÑ ±âÁ¸ ¿¬±¸ °ËÅä
¥³. ¹«¿ª°ú ȯ°æ ºÐÀï Àü¹® ±¹Á¦È¯°æºÐÀïÇØ°á±â°ü ¼³¸³¿¡ °üÇÑ °ËÅä
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¥±. WTO ¹Ý´ýÇÎÇùÁ¤»ó ÇÇÇØÆÇÁ¤¿ä¼Ò ¹× ´ýÇÎ ÀÌ¿Ü ±âŸ¿äÀÎ ºÐ¼®
¥². ¿ì¸®³ª¶óÀÇ °ü·Ã ±ÔÁ¤ ¹× °üÇà ºÐ¼®
¥³. ¿ì¸®³ª¶ó¿¡ÀÇ ½Ã»çÁ¡
¥´. °á·Ð
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Abstract


¥±. Goals and structure of service negotiations
¥². Horizontal issues
¥³. Sector-specific issues
¥´. Conclusion
References
Abstracts


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Abstracts


¥±. Anti-dumping and Its Effects on China and Korea
¥². Anti-dumping Regulations in a Future China-Korea FTA
¥³. Conclusion and Recommendations
References
±¹¹®ÃÊ·Ï
Abstracts


¥±. Áß±¹ ±ÝÀ¶¼­ºñ½º ¹ýü°èÀÇ ÇöȲ ¹× ¹®Á¦Á¡ ºÐ¼®
¥². ±ÝÀ¶½ÃÀå°³¹æÀÌ ±ÝÀ¶¼­ºñ½º¹«¿ª¿¡ ¹ÌÄ¡´Â ¿µÇâ
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3. û¼Ò³â¹®È­ÀÇ ½Çõ¿îµ¿
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¥±. µ¿¹Ý¡¤ÁßµµÀÔ±¹ ÀÚ³àµéÀ» À§ÇÑ ´Ù¹®È­±³À°
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INTRODUCTION
COLLAPSE BY NATURAL DISASTER AND RECONSTRUCTION
RESTORATION FROM DAMAGE BY THE 2011 GREAT EAST JAPAN EARTHQUAKE
SOME BASIC ISSUES IN THE DESIGN OF GRS RW
GRS INTEGRAL BRIDGE
CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. HISTORY AND DEVELOPMENT
3. EMBANKMENT DAMS
4. CONCRETE AND MASONRY DAMS
5. ROLLER COMPACTED CONCRETE DAMS
6. GEOMEMBRANE SELECTION CRITERIA
7. BEHAVIOR OF GEOMEMBRANES AS A FUNCTION OF TIME
8. CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. EROSION CONTROL SYSTEM
3. NATURAL GEOTEXTILE TECHNOLOGY
4. GEOCELL TECHNOLOGY
5. GEOTEXTILE TUBE TECHNOLOGY
6. GEOMEMBRANE AND GCL TECHNOLOGY
7. CONCLUSIONS
REFERENCE


1. INTRODUCTION
2. OBJECTIVES
3. TEST MATERIALS AND METHODS
4. TENSILE STRENGTH AT DIFFERENT TEMPERATURE
5. PRETENSION AND HEATING SIMULATION PROCESS
6. STRESS-STRENGTH BEHAVIOR DUE TO HEATING AND PRETENSION PROCESS
7. ELONGATION OF POLYESTER YARNS DURING SIMULATION PRODUCTION PROCESS
8. TENSILE STRENGTH OF POLYESTER YARNS BEFORE AND AFTER SIMULATED PRODUCTION
9. CONVENTIONAL CREEP TESTS OF POLYESTER YARNS BRFORE AND AFTER SIMULATION OF PRODUCTION PROCES
10. SEM SCANNING PICTURES
11. SUMMARY AND CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. EXPERIMENTAL
3. RESULTS AND DISCUSSION
4. CONCLUSION
REFERENCES


1. INTRODUCTION
2. AASHTO SIMPLIFIED AND FHWA STRUCTURE STIFFNESS METHODS
3. ORIGINAL AND MODIFIED K-STIFFNESS METHODS
4. INTERFACE SHEAR STRENGTH FROM DIRECT SHEAR TEST
5. FULLY INSTRUMENTED TEST EMBANKMENT IN PHITSANULOK PROVINCE, THAILAND
6. VERTICAL SETTLEMENTS
7. STRAINS IN REINFORCEMENTS FROM MEASUREMENTS
8. COMPARISON POLYESTER (PET) AND STEEL GRIDS USING K-STIFFNESS METHOD
9. COMPARISON OF PREDICTED VERSUS MEASURED DATA
10. CONCLUSIONS
11. NOTATIONS
REFERENCES


1. INTRODUCTION
2. MATERIALS AND METHODS
3. RESULTS AND ANALYSES
4. CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. CONSTRUCTION ¢à 1
3. EXPERIMENT AND MODELING
4. APPLICATION
5. CONSTRUCTION ¢à 2
6. CONCLUSION
REFERENCE


1. INTRODUCTION
2. CONSTRUCTION METHOD OF GESC
3. CONSTRUCTION
4. RESULTS AND DISCUSSION
5. CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES



1. INTRODUCTION
2. ELASTO-PLASTIC CONSTITUTIVE EQUATION
3. CONSTITUTIVE MODEL OF VISCO-PLASTICITY
4. TRIAXIAL TEST SIMULATION
5. GEOBAG BEHAVIOR UNDER SHEAR FORCES
6. DYNAMIC PROGRESSIVE FAILURE OF REINFORCED EMBANKMENT DAM
7. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. CURRENT STATUS AND SURVEYS
3. FALLING WEIGHT DEFLECTOMETER SURVEYS
4. FLEXURAL STRAIN OF PAVEMENT INDUCED BY IMPULSE LOAD
5. CONCLUDING REMARKS
REFERENCES


1. INTRODUCTION
2. COMPOSITION OF REINFORCED EARTH WALL WITH STEEL FRAMED-FACING
3. FIELD TEST
4. RESULTS AND DISCUSSION
5. CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. BEACH RESTORATION PROJECT USING GEOTEXTILE BAGS
3. SLOPE IMPROVEMENT PROJECT USING GEOTEXTILE TUBES AND BAGS IN MALAYSIA
4. CONCLUSION
REFERENCES


1. INTRODUCTION
2. SITE LOADING TEST
3. SITE LOADING TEST
4. CONCLUSION
REFERENCE


1. INTRODUCTION
2. LOAD SUPPORTING MECHANISM OF GEOCELL SYSTEM
3. EXPERIMENT OF GEOCELL SYSTEM
3. CALIBRATION CHAMBER TEST OF GEOCELL SYSTEM
4. BEARING CAPACITY RESULT OF THE REINFORCEMENT LAYER NUMBER OF GEOCELL
5. FINITE ELEMENT ALYSIS
6. CONCLUDING REMARKS
REFERENCES


1. INTRODUCTION
2. MATERIALS
3. SOIL TESTS
4. TEST RESULTS AND ANALYSIS
5. CONCLUSIONS
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. DRAIN TYPES
3. DISCHARGE CAPACITY
4. DISINTEGRATION WITH TIME
5. CONCLUSION
REFERENCES


1. INTRODUCTION
2. BACKGROUND
3. MATERIALS AND METHOD
4. TEST RESULTS AND DISCUSSION
5. CONCLUSION
REFERENCES


1. INTRODUCTION
2. TEST EQUIPMENT AND METHODS
3. TEST RESULTS AND DISCUSSION
4. CONCLUSION
REFERENCE


1. INTRODUCTION
2. CONCEPTUAL DESCRIPTION OF PROPOSED METHOD
3. PILOT CONSTRUCTION
4. INSTALLED PILE QUALITY
5. CONCLUSION
ACKNOWLEDGEMENTS
REFERENCES


1. INTRODUCTION
2. SPECIMEN
3. TEST METHOD
4. ANALYSIS OF TEST RESULTS
5. CONCLUSIONS
REFERENCES


1. INTRODUCTION
2. EXPERIMENTAL
3. RESULTS AND DISCUSSION
4. CONCLUSION
REFERENCES


1. INTRODUCTION
2. TYPES OF NATURAL GEOSYNTHETICS
3. RAINFALL SIMULATED EXPERIMENT
4. RAINFALL SIMULATED LABORATORY EXPERIMENT
5. RAINFALL SIMULATED LABORATORY EXPERIMENTAL RESULTS
6. CONCLUDING REMARKS
REFERENCES


1. INTRODUCTION
2. EFFECTS OF THE HYDRAULIC GRADIENTS
3. EFFECTS OF THE APPLIED PRESSURES
4. EFFECTS OF THE AIR BUBBLE ON DISCHARGE CAPACITY
5. SUMMARY
ACKNOWLEDGEMENTS
REFERENCES


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INTRODUCCION
LOS CAMINOS DE LA LUCHA : ANTECEDENTES DE LOS JUICIOS POR LA VERDAD
LOS JUICIOS POR LA VERDAD Y LAS CIENCIAS SOCIALES
LOS ORIGENES DE UN JUICIO POR LA VERDAD : DE ESPANA A MAR DEL PLATA
A MODO DE CIERRE
REFERENCIAS


INTRODUCCION
RESENA HISTORICA
LA COMISION PARA EL ESCLARECIMIENTO HISTORICO Y SU ¡°MEMORIA DEL SILENCIO¡±
Entre Reparaciones y Acuerdos de Paz : La Recomendacion de CEH al Estado
LA COMISION DE ESCLARECIMIENTO HISTORICO Y EL ESTADO
CONCLUSIONES
REFERENCIAS


INTRODUCCION
NOTA METODOLOGICA
SOCIEDAD Y CIUDAD POSINDUSTRIAL
UNA VISION GENERAL DE LA URBANIZACION MEXICANA
CONCENTRACION TERRITORIAL DE LA ACTIVIDAD TERCIARIA
CARACTERISTICAS GENERALES DE LA URBANIZACION DE MICHOACAN
LA ORGANIZACION ECONOMICA TERCIARIA DE MICHOACAN
CONCENTRACION URBANA DE SERVICIOS EN MICHOACAN
MORELIA: ¢¯HACIA UNA CONSOLIDACION DEL SECTOR COMERCIO Y SERVICIOS AL PRODUCTOR?
URUAPAN Y LOS SERVICIOS AL CONSUMIDOR
ZAMORA Y SU TERCIARIZACION VIA COMERCIO Y SERVICIOS AL CONSUMIDOR
CONCLUSIONES
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INTRODUCTION
COMALA AND PURGATORY
SALVATION AND TRANSITION
SUSANA
CONCLUSIONS
REFERENCES


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¥². ½Ã°£°ú °ø°£, Å»¿µÅäÈ­¿Í À翵ÅäÈ­ÀÇ ±ØÀÛ¼ú
¥³. °á·Ð
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ABSTRACT


¥±. Á¤Ä¡Àû µµ¹ßÁ¤½Å¿¡¼­ ºñ·ÔµÈ µ¿½Ã´ë±ØÀåÀÇ ±¸Ãà
¥². ÆäÅÍ ½´Å¸ÀÎ ¿¹¼ú°¨µ¶°ú »þ¿ìºß³× ½ºÅ¸ÀÏÀÇ ±¸Ãà
¥³. 90³â´ë ÀÌÈÄÀÇ Àüȯ°ú À§±â
¥´. ÀÌ¿øÁ¦ ¿¹¼ú°¨µ¶ üÁ¦ÀÇ »õ·Î¿î Ãâ¹ü°ú ÀþÀº µµÀü
¥µ. ÃÖ±Ù »þ¿ìºß³×ÀÇ Çõ½Å½Ã½ºÅÛ
VII. ³ª°¡´Â ¸»
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Zusammenfassung


¥±. À¯È¤ÀÇ ¸ðƼÇÁ
¥². ÀÛǰ ±¸Á¶? ´ë¸³ ±¸Á¶¿¡¼­ À¯Èñ ±¸Á¶·Î
¥³. ºñÇÕ¸®Àû À̼º ºñÆÇ¿¡¼­ ¡°Å×·¯¸®Áò¿¡ ´ëÇÑ ¹ÝÀÀ¡±À¸·Î
¥´. °á·ÐÀ» ´ë½ÅÇÏ¿©? Èñ±ØÀ¸·Î Ǭ ÁøÁöÇÑ ³îÀÌ
Âü°í¹®Çå
Zusammenfassung


II. ¾Æ¹æ°¡¸£µå ¹ÌÇаú ½ºÆäÀÎ ¹®ÇÐ
III. ½ºÆäÀÎ ¾Æ¹æ°¡¸£µå ¼Ò¼³ ÅØ½ºÆ®¿Í »çȸ
IV. °á·Ð
Âü°í¹®Çå
ABSTRACT


¥±. 17¼¼±â ½ºÆäÀÎ »çȸ¿¡¼­ÀÇ ¿©¼º°ú ¿¬±Ø
¥². ¼öµ¿¼ºÀÇ »ó¡
¥³. °­ÀÎÇÔÀÇ »ó¡
¥´. Çö¸íÇÔÀÇ »ó¡
¥µ. ¸Î´Â ¸»
Âü°í¹®Çå
ABSTRACT


II. ½ºÅ侯ÁÖÀÇÀÇ »ç»óÀû ÀǹÌ
III. ²²º£µµ ½Å½ºÅ侯ÁÖÀÇÀÇ ½Ã´ëÀû ÇÔÀÇ
IV. ²²º£µµÀÇ °í³ú¿Í ½Å½ºÅ侯ÁÖÀÇÀÇ ÇѰè
V. ³ª°¡´Â ¸»
Âü°í¹®Çå
ABSTRACT


¥±. º»·Ð
¥². °á·Ð
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ABSTRACT


¥±. ¡®¿å¸Á¡¯¿¡ ´ëÇÑ À̷еé
¥². ¡®È¯»ó¼º¡¯ÀÇ ÀåÄ¡·Î¼­ÀÇ '½Ã°£¼º'ÀÇ ÀÛµ¿¿ø¸®
¥³. ¡®½Ã°£¼º¡¯À» ´ë¸®º¸ÃæÇÏ´Â ¡®½Ã°¢Àû ÀåÄ¡¡¯ÀÇ ÀÛµ¿¿ø¸®
¥´. °á·Ð: ¡®³ª¸£½ÃÁò¡¯¿¡¼­ ¡®Å¸ÀÚ¼º¡¯À¸·Î
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ABSTRACT




ƯÁ¤ Á¤±ÇÀÇ Á¤Ä¡Àû ·¹Å丯ÀÌ ±³À°°úÁ¤¿¡¡¦
³ì»ö ¸Þµé¸®¡¦³ì»ö°æÁø´ëȸ, ³ì»ö³îÀÌÅÍ, ³ì»öÀÎÁõÁ¦
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Á¶¼±ÀÇ µÎ·¹ °øµ¿Ã¼ ³ó¹ÎµéÀº ³ë¿¹°¡ ¾Æ´Ï¾ú´Ù


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Çлý ÀÚġȰµ¿À» ¸·´Â À庮µé
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"²É ÇÑ ¼ÛÀÌ Ç® ÇÑ Æ÷±â ºÎó´Ô(ÇÏ´À´Ô) ¾Æ´Ñ °ÍÀÌ ¾ø½À´Ï´Ù"
"¼¼»óÀÇ ÆòÈ­¸¦ ¿øÇÑ´Ù¸é ³»°¡ ¸ÕÀú ÆòÈ­°¡ µÇÀÚ"


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Áø·Î±³À°ÀÇ ²É, 'Çѱ¹Àâ¿ùµå' °³°ü


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3. wenn-ºÎ¹®ÀåÀ» Æ÷ÇÔÇÏÁö ¾Ê´Â ´Ü¹® Çü½ÄÀÇ ºñÇö½ÇÀû Á¶°Ç¡¤°á°ú¹® - ÅØ½ºÆ® ¾ð¾î Çö»óÀ¸·Î¼­ÀÇ Æ¯¼º
4. ¸Î´Â ¸»
Âü°í¹®Çå


2. ¿¬±¸ÀÇ ¹è°æ°ú ±âÁ¸ÀÇ ¿¬±¸
3. ºÐ¼® ÀÚ·á, ¿¬±¸ ¹æ¹ý, Åë°èÀû ºÐÆ÷
4. ¡®¾ó±¼¡¯ÀÇ ¾îÇüÀû Ư¼º°ú ÀǹÌÀÇ »çÀüÀû Á¤ÀÇ Àç°íÂû
5. ÄÚÆÛ½º ÀÚ·á¿¡¼­ÀÇ ¡®¾ó±¼¡¯ÀÇ È¯À¯Àû/ÀºÀ¯Àû »ç¿ëÀÇ ¿ë·Ê
5. ¡®¾ó±¼¡¯ÀÇ ÀºÀ¯Àû »ç¿ë¿¡ ´ëÇÑ ÀÎÁö¾ð¾îÇÐÀû ºÐ¼®
6. ¿ä¾à ¹× °á·Ð
Âü°í¹®Çå


2. Previous Studies of News Article Headlines
3. The Informativeness of Online/Offline Headlines
4. The Attractiveness of Online/Offline Headlines
5. Conclusion
References


2. Literature Review
3. The Study
4. Conclusion
References


2. ºÐ¼® ÀÚ·á (Corpus)
3. ÁÖÁ¦±¸Á¶¿Í ÁÖÁ¦¾î Ç¥Áö
4. ÁÖÁ¦ Ç¥ÇöÀÇ ÁöÇ¥ ºÐ·ù
5. °á·Ð
Âü°í¹®Çå


2. Traditional Views on Grammaticalization Processes
3. Grammaticalization on the Language Output Level
4. Grammaticalization on the Language Processing Level
5. Conclusion
References


2. Background
3. The experiment
4. Results
5. Discussion and conclusions
Appendix ¥°. test sentences
Appendix ¥±. Pictures
References


2. Ãß·Ð
3. ½ÇÇè: ³í¸®Àû °ü°èÀÇ ¼øÇàÀû Ãß·Ð
4. ³ª°¡´Â ¸»
Âü°í¹®Çå


2. Classification of Resultative Sentences
3. Previous Accounts of RCs
4. The Causal Link Analysis
5. Conclusion
References


2. Previous Studies
3. Groups
4. A Novel Analysis based on Groups
5. Conclusion
References


2. Den Dikken¡¯s (2006) Phase Extension
3. Internal structure of AP and VP small clauses
4. Conclusion
References


2.¡ºÁߵ¹®Àü¡»°ú ÀÌ±â·æ
3.¡ºÁߵ¹®Àü¡»ÀÇ Ã¼Á¦¿Í °ü·ÃÇÑ Æ¯Â¡
4.¡ºÁߵ¹®Àü¡»¿¡ »ç¿ëµÇ´Â ¹®¹ý ¿ë¾î
5. ¸Î´Â ¸»
Âü°í¹®Çå


2. ¼±Çà ¿¬±¸ °ËÅä
3. ±¸¼º¿ø¼Ò À̷п¡ ÀÇÇÑ »ðÀÔ¸ðÀ½ À¯Çü ºÐ¼®
4. /a, i, u/ÀÇ À½¼ºÀû Ư¼º°ú »ðÀÔ¸ðÀ½
5. ¸ÎÀ½¸»
Âü°í¹®Çå


2. Æä¸£½Ã¾Æ¾î ó¼ÒÀüÄ¡»çÀÇ Á¾·ù¿Í ºÐÆ÷
3. Æä¸£½Ã¾Æ¾î °æ·Î³íÇ× Ç¥»ó°ú ó¼ÒÀüÄ¡»çÀÇ °æ·ÎÇØ¼®
4. ó¼ÒÀüÄ¡»ç±¸ÀÇ ±¸Á¶¿Í µ¿»ç±¸¿ÍÀÇ °ü°è
5. °á·Ð
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2. Previous Approaches
3. Tul- ¡®move.in¡¯ and Na- ¡®move.out¡¯ as Opposites
4. In and Out as Non-Opposites in Korean: Shared Image Schema
5. Aspectual Differences
6. Concluding Remarks
References


2 ºÎÁ¤»çÀýÀÇ ±¸Á¶
3 ÇØ°áÃ¥
4 °ü°è´ë¸í»ç¿Í ¼ö½Ä±â´ÉÇ¥Áö¾îÀÇ »óº¸Àû ºÐÆ÷
5 °á·Ð
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2. Relative clause attachment ambiguities
3. The present study
4. Experiment
5. Discussion
6. Conclusion
References


2. ¿¬±¸ ´ë»ó ÀÚ·á ¼±Á¤
3. ³²¼º°ú ¿©¼ºÀÇ ¹ßÈ­ ºóµµ ¹× ±â´É ºÐ¼®
4. ³²¼º°ú ¿©¼ºÀÌ »ç¿ëÇÏ´Â ÇÙ½É¾î ºÐ¼®
5. °á·Ð
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2. ·¯½Ã¾Æ »çÀ̹ö °ø°£¿¡¼­ ¸»°ú ±ÛÀÇ °æ°è Çã¹²
3. ¸»°ú ±ÛÀÇ È¥ÇÕ¿¡¼­ ±â´ÉÀû ¹®Ã¼µéÀÇ »óÈ£ÀÛ¿ëÀ¸·Î
4. ·¯½Ã¾ÆÀÎÀÇ ÀüÇüÀûÀÎ ¼ÒÅë ¹æ½Ä
5. Æ÷½ºÆ®-¼Òºñ¿¡Æ® ½Ã±â ·¯½Ã¾Æ¾îÀÇ º¯È­ °æÇâ
6. °á·Ð
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2. Previous accounts of intervention effects
3. Experiment
4. Results and Discussion
5. Conclusion
References


2.¡º¿µ¾î¹®¹ýø°æ¡»ÀÇ ±¸¼º°ú Ư¡
3.¡º¿µ¾î¹®¹ýø°æ¡»¿¡¼­ »ç¿ëµÈ ¹®¹ý ¿ë¾î °íÂû
4.¡º¿µ¾î¹®¹ýø°æ¡»¿¡¼­ÀÇ ¹®Àå ºÐ¼® °íÂû
5. ¸Î´Â ¸»
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¥³. ¿¡³ÊÁö ¾Èº¸¸¦ Áß½ÉÀ¸·Î ÇÑ ´ë¿Ü°æÁ¦Á¤Ã¥
¥´. ¸ÎÀ½¸»
Âü°í¹®Çå
Abstract


¥°. µé¾î°¡´Â ¸»
¥±. ¼±Ç࿬±¸ °ËÅä
¥². ±â¾÷ ³» ¹®È­Àû ÁßÀçÀÚÀÇ À¯Çü°ú ¿ªÇÒ
¥³. ¹®È­Àû ÁßÀçÀÚÀÇ Æ¯¼º
¥´. °á·Ð
Âü°í¹®Çå
Abstract


¥°. ¼­·Ð
¥±. º£´Ù Á¾±³ ¹®Çå¿¡¼­ ¹Ú¶ì
¥². ºÒ±³ º¸µð»ñ¶ß¹ÙÀÇ È­Çö »ç»ó
¥³. Æ÷½ºÆ®-¸¶¿ì¸®¾ß ½Ã´ë¿Í ½Å°üÀÇ º¯È­
¥´. °á·Ð
Âü°í¹®Çå
Abstract



¥±. º¸À念¿ªÀÌ Áö´Ñ ¿ì¼±Àû ÁöÀ§
¥². ±âº»±Ç Á¦ÇѰú ±âº»±Ç ±ÔÀ² »çÀÌÀÇ ÀÔ¹ýÀÚ °ð ¹ý·üÁ¤¸³ÀÚ
¥³. ±âº»±ÇÀÇ Á¦ÇѰú Á¦ÇÑÀÇ Á¤´çÈ­
¥´. °á»ê°ú Àü¸Á


¥±. ±âÆÇ·Â(Rechtskraft)°ú ±â¼Ó·Â(Bindungswirkung)ÀÇ ±¸º°
¥². ÁÖµÈ ÀÌÀ¯ÀÇ ±â¼Ó·Â
¥³. ¸Î´Â ¸»


¥±. °í¿ëº¸ÀåÁ¤Ã¥°ú °í¿ëº¸Àå°ü·Ã¹ýÀÇ º¯È­
¥². ÇöÇà °í¿ëº¸Àå°ü·Ã¹ýÀÇ ¹®Á¦Á¡°ú °³¼±¹æÇâ
¥³. °á·Ð


¥°. ÀçÆÇ±Ù°ÅÀÇ ±ÔÀ²¹Ðµµ¿¡ ´ëÇÑ ¿ä±¸»çÇ×
¥±. ÀçÆÇ±Ù°Å·Î¼­ÀÇ ±âº»±ÇÀÇ ¹æ¾îÀû ¼º°Ý
¥². ÀçÆÇ±Ù°Å·Î¼­ÀÇ ÀÔ¹ýÀ§ÀÓ
¥³. ÀçÆÇ±Ù°Å·Î¼­ÀÇ ±¹°¡¸ñÇ¥±ÔÁ¤


¥±. üåÞäïÒγÀÇ ëòëù¿Í àõòõ
¥². üåÞäïÒγÀÇ äÌËì
¥³. üåÞäïÒγÀÇ üùÕô
¥´. üåÞäïÒγÀÇ ÜÁη¡¤ÝáöÇ ¹× ÍëãÆ
¥µ. üåÞäïÒγÀÇ Ü¨ËÖ
¥¶. Ì¿åÞ


¥±. úÞú¼ ÍëïáËÛÕÎÛö»óÀÇ î¢÷üØãʤ̫ë«ò¥ú¼êÓÀÇ Ð®ð¤
¥². î¢÷üØãʤ̫ë«ò¥ú¼êÓÀÇ ùê×âîÜÀΠЮð¤Û°ú¾
¥³. Ì¿Öå


¥±. ÇöÇà¹ýÇØ¼®·Ð¿¡ ÀÇÇÑ ±¸Á¦ÀÇ °¡´É¼º°ú ÇѰè
¥². ¿µ¹Ì¹ý¿¡¼­ÀÇ ëôð¤ú°@Ûö×â
¥³. °á·Ð


¥±. L'avenement de la loi pour l'equite' dans le marche de sous-traitance
¥². Les conditions d'application de L.E.M.S.
¥³. Le contenu de la loi pour l'e'quite dans le marche' de sous-traitance
¥´. Appre'ciation critique sur L.E.M.S.


¥±. ͺëò¿Í Φã÷ÀÇ Ï¡Ü¬ ÀÇÀÇ
¥². ͺëò
¥³. Φã÷
¥´. ͺëò¡¤Î¦ã÷ÀÇ Ø¡ñûô¡ìò
¥µ. Ì¿Öå


¥±. ÀÌ·ÐÀû °íÂû
¥². ¿¬±¸°¡¼³ ¹× ¿¬±¸¹æ¹ý
¥³. Á¶»ç°á°ú ¹× ºÐ¼®
¥´. °á·Ð


¥±. ԼءЮð¤êÍê¬üå¿¡ ´ëÇÑ ðôÒ­ÀÇ øÄʤ
¥². ԼءЮð¤êÍê¬üå¿¡ ´ëÇÑ ì¡üå¿Í ÓÞ÷ÖçÐÀÇ ÷Öð¤
¥³. ԼءЮð¤êÍê¬üå¿Í ÓÞ÷ÖçаúÀÇ Î¼Ìõ
¥´. Ì¿Öå


¥±. µ¶ÀÏ ÀÔÁõÃ¥ÀÓ·ÐÀÇ ¿ª»çÀû Àü°³
¥². ÇàÁ¤¼Ò¼ÛÀÇ Æ¯Â¡ÀÎ Á÷±ÇŽÁöÁÖÀÇÀÇ Àû¿ë
¥³. ÀÔÁõÃ¥ÀÓ¿¡ À־ ¹Î»ç¼Ò¼Û¿ø¸®ÀÇ ¿øÄ¢Àû Àû¿ë°ú ±× º¯¿ë
¥´. ¿ì¸®³ª¶ó ÀÔÁõÃ¥ÀÓÁ¦µµ¿ÍÀÇ ºñ±³
¥µ. °á·Ð


¥±. ÙíÜÍßÁÀÇ ÞäüåîÜ ð¤å³°ú é©ÜÍßÁÀÇ â¥éÄ¿¡ °üÇÑ ³íÀÇ
¥². ±¸º°ÀÇ ±âÁØ
¥³. Ú¸ÏÐÀÇ ìµÖå
¥´. ÇÁ¶û½ºÀÇ ÀÌ·Ð
¥µ. ¸ÎÀ½¸»


¥±. ê¡ú¼íº
¥². ´Ù¸¥ »ç¶÷
¥³. Ì¿Öå


¥±. Impact of China's WTO Entry to the Northeast Asian Economy
¥². Possibility of Tax Evasion and Avoidance in the Region
¥³. Current Japanese and Korean Tax Policies
¥´. EU and OECD Anti-Tax Evasion Moves
¥µ. U.S. Efforts against Tax Evasion
¥¶. Concousion


¥±. ΦïïÀÇ ÷Öð¤¿Í ÒýÓ«Í­îÜ ú¼ïÙï½ó­
¥². Àç·®·Ð¿¡ À־ÀÇ ÇàÁ¤ÀýÂ÷·Ð°ú Âü°¡·ÐÀÇ ¹ßÀü
¥³. Ì¿Öå



2. ÀÚº»ÁÖÀÇ¿Í ¼±°Å¹ÎÁÖÁÖÀÇ
3. ¸¶¸£Å©½ºÁÖÀÇ´Â ¼±°Å¹ÎÁÖÁÖÀǸ¦ ¾î¶»°Ô º¼ °ÍÀΰ¡?
4. ³ª¿À¸ç
Âü°í¹®Çå
Abstract


2. Áøº¸Á¤´ç°ú ¸¶¸£Å©½ºÁÖÀÇ Á¤´ç
3. ¸¶¸£Å©½ºÁÖÀÇ¿Í ´ëÀÇÁ¦ ¹ÎÁÖÁÖÀÇ
4. Çѱ¹¿¡¼­ ¸¶¸£Å©½ºÁÖÀÇ¿Í Áøº¸Á¤´ç¿îµ¿
5. ¸ÎÀ½¸»
Âü°í¹®Çå
Abstract


2. ¡®Áøº¸´ëÅëÇÕ¡¯ÀÇ ½ÇÆÐ, ¡®ÇÇ´Â ¹°º¸´Ù ÁøÇÏ´Ù¡¯
3. Áøº¸±³¿¬, Áøº¸ÁÂÆÄÁö½ÄÀÎ ¿îµ¿ÀÇ ¡®À§±â¡¯
4. »õ·Î¿î ¼ºÂû, Áøº¸ÁÂÆÄÁ¤Ä¡ÀÇ À籸¼º°ú ¡®¾Æ¸§´Ù¿î ÆÐ¹è/½Â¸®¡¯
Âü°í¹®Çå
Abstract


2. °è±ÞÅõÀï°ú ÀÇȸ°øÈ­Á¤: 2¿ùÇõ¸í¿¡¼­ º¸³ªÆÄ¸£Æ® Äíµ¥Å¸¿¡ À̸£±â±îÁö
3. °è±ÞÅõÀï°ú º¸Åë¼±°Å: ÀÇȸ°øÈ­Á¤¿¡¼­ ÀÇȸµ¶Àç·ÎÀÇ Á¤Ä¡º¯µ¿
4. °á·Ð
Âü°í¹®Çå
Abstract


2. º¯ÇõÀû ³ëµ¿Á¶ÇÕÁÖÀÇ¿Í »çȸ¿îµ¿³ëÁ¶ÁÖÀÇ
3. ½ÅÀÚÀ¯ÁÖÀÇ ¼¼°èÈ­¿¡ µû¸¥ ¡®°³Çõ¡¯°ú ³ëµ¿¿îµ¿ÀÇ ´ëÀÀ
4. ¹ÎÁÖ³ëÃÑÀÇ ´ë¾È¼¼°èÈ­ À̳äÀÇ ±¸¼º: Àϱ¹ÁÖÀÇ, »çȸÀû Á¶ÇÕÁÖÀÇ, »çȸ¹ÎÁÖÁÖÀÇÀÇ ¿ì¼¼ ¼Ó¿¡¼­ °¢Ãà
5. ´Ù¼ö ³ëµ¿°è±ÞÀÇ ¿îµ¿À¸·Î¼­ »çȸ¿îµ¿³ëÁ¶ÁÖÀÇÀÇ °¡´É¼º
6. ¸ÎÀ½¸»
Âü°í¹®Çå
Abstract


2. ·è¼ÀºÎ¸£Å©ÀÇ ºñÆÇÀû ÀïÁ¡: È­ÆóÀÇ Ãâó
3. ·è¼ÀºÎ¸£Å©ÀÇ ºñÆÇÀû ÀïÁ¡: ¼¼ÀÌÀÇ ¹ýÄ¢°ú ÅõÀÚÇÔ¼ö
4. È®´ëÀç»ý»ê Ç¥½Ä
5. ¸Î´Â ¸»
Âü°í¹®Çå
Abstract


2. M-C-M°ú ±â°èÀû ½Ã°£ÀÇ Áö¹è
3. ½ÅÀÚÀ¯ÁÖÀÇ ½Ã´ë ½Ã°£ÀÇ °æÁ¦
4. »õ·Î¿î ½Ã°£ÀÇ °æÁ¦¿Í ¹®È­»çȸ·Ð
Âü°í¹®Çå
Abstract


2. ¾Æ½Ã¾ÆÀû »ý»ê¾ç½Ä ³íÀÇ¿Í Æ®¸®ÄÁƼ³ÙÅ»¸®Áò
3. ¡ºÁ¦ÀÎ ¿¡¾î¡»¿¡ ³ªÅ¸³­ ¶óƾ¾Æ¸Þ¸®Ä« - ¾ÆÇÁ¸®Ä« - ¾Æ½Ã¾Æ
4. ¸ÎÀ½¸»: Å»½Ä¹Î ÇàÀ§ÀÚ¼ºÀÇ °¡´É¼º
Âü°í¹®Çå
Abstract


ÀïÁ¡ 1. ÀÚº»ÁÖÀǸ¦ µ¶Á¡ÀÚº»ÁÖÀÇ, ±¹°¡µ¶Á¡ÀÚº»ÁÖÀÇ µîÀ¸·Î ±¸ºÐÇÏ´Â °ÍÀÌ °¡Áö´Â ÀÌ·ÐÀû¤ý½ÇõÀû Á߿伺Àº ¹«¾ùÀΰ¡?
ÀïÁ¡ 2. ¿Ö À̹ø À§±â¸¦ ½ÅÀÚÀ¯ÁÖÀÇÀû ±¹°¡µ¶Á¡ÀÚº»ÁÖÀÇÀÇ À§±â¶óÇϴ°¡? ±×¸®°í ÀÌ À§±â ÀÌÈÄÀÇ ÀÚº»ÁÖÀǸ¦ ¾î¶»°Ô Àü¸ÁÇϴ°¡?
ÀïÁ¡ 3. ÀÌÀ±À²ÀÇ °æÇâÀû ÀúÇϹýÄ¢°ú, ±¸Á¶À§±â ¹× ¼øÈ¯Àû À§±â¸¦ ±¸º°ÇÏ´Â ¹®Á¦
ÀïÁ¡ 4. ¼¼°è´ë°øÈ²ÀÇ °³³ä ±×¸®°í ¡®À§±â¡¯¿Í ¡®°øÈ²¡¯ÀÇ ±¸º° ¹®Á¦
¸ÎÀ½¸»
Âü°í¹®Çå
Abstract


2. ´ÜÆíÀû Ãø¸é¿¡ ´ëÇÑ ³íÆò
3. ¡ºÀÎÁöÀÚº»ÁÖÀÇ¡»¿Í ³ëµ¿°¡Ä¡·Ð
4. ÀÎÁöÀÚº»ÁÖÀÇ¿¡¼­ÀÇ °¡Ä¡ÀÇ »ý»ê°ú ÂøÃë
5. ¸ÎÀ½¸»
Âü°í¹®Çå
Abstract


2. ¹«±â°è¾à°ú Á÷¹«±ÞÁ¦
3. °í¿ë¼­ºñ½º»ê¾÷ Ȱ¼ºÈ­
4. À¯¿¬¾ÈÁ¤¼º ³í¸®ÀÇ ¹®Á¦
5. ³ëµ¿¿îµ¿ÀÇ ´ëÀÀ Àü·«
6. ³ª°¡¸ç
Âü°í¹®Çå
Abstract


ð¯IIíñ ùÛÏÐÀÇ ÌØù¡ð¤Óø
ð¯IIIíñ ÌØù¡ð«Íê ãù÷¾ðàÞÛ
ð¯IVíñ ËÇà¼Û°äÐ
ð¯Víñ Ì¿Öå
óÑÍÅÙþúÌ
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II. ÝÑî³ÀÇ ô¥×â
III. êÍê¬üåÀÇ åöÙâúÞüÏ
IV. ÷Öͪ íÀÖù
V. ÝÂΡêÍê¬üåÀÇ üÀÔѰú óÑÍÅÞÀÖÇ
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ð¯4íñ âÃìýá¼Þ¨î¯ÀÇ êü÷׸¶Áø¤ýâÃìýê«Ê¤ ¹× ÏÐÒ®ã¼íÞ
ð¯5íñ âÃìýá¼Þ¨î¯¿Í á¼Þ¨íºÜÁûÞ
ð¯6íñ é©å³ ¹× Ì¿Öå
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𦋙íñ ΦÓÞ¤ýΣíåøÐíûÀÇ Ùýð¹ïǰú ËÇà¼Û°äÐ
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ð¯2íñ ìü(Óè)ó¨ñ¬÷È ¼­ºñ½ºã¼íÞ
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