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×Ô¶¯»¯×¨ÒµÂÛÎÄ·¶ÎÄ Ä¿ ¼ ÕªÒª I Abstract II µÚÒ»Õ Ð÷ÂÛ 1 1.1 ÎÊÌâµÄÌá³ö 1 1.2 ¹úÄÚÍâµÄ·¢Õ¹¸Å¿ö 2 1.3 DSP¼¼ÊõµÄ·¢Õ¹ 4 1.4 ¿ÎÌâµÄÑо¿ÈÎÎñ 5 µÚ¶þÕ г²¨²âÁ¿Ô­Àí 7 2.1 ¸ÅÊö 7 2.2 г²¨µÄ»ù±¾¸ÅÄî 7 2.2.1 г²¨µÄ»ù±¾¸ÅÄî 7 2.2.2 ·ÇÕýÏҵ緹¦Âʺ͹¦ÂÊÒòËØ 9 2.3 г²¨·ÖÎö 10 2.3.1 ·ÇÕýÏÒÖÜÆÚº¯Êý·Ö½âΪ¸µÁ¢Ò¶¼¶Êý 11 2.3.2 ÐźŵIJÉÑùºÍƵÆ×·ÖÎö 13 2.3.3 FIRÊý×ÖÂ˲¨Æ÷µÄÉè¼Æ 17 µÚÈýÕ ϵͳµÄÓ²¼þÉè¼Æ 21 3.1 Ó²¼þµç·µÄ×ÜÌåÉè¼Æ 21 3.1.1 ×ÜÌåÉè¼Æ·½°¸ 21 3.1.2 ϵͳÉè¼ÆÔ­Àí 22 3.2 MPUµÄÑ¡Ôñ 24 3.3 Êý×ÖÐźŴ¦ÀíÆ÷µÄÓ¦Óà 25 3.3.1 DSPоƬµÄ·¢Õ¹ 25 3.3.2 DSPоƬµÄ·ÖÀà 27 3.3.3 DSPоƬµÄ»ù±¾½á¹¹ 27 3.3.4 DSPоƬµÄÑ¡Ôñ 30 3.3.5 DSPоƬµÄÓ¦Óà 32 3.4 ±¾×°ÖÃDSPоƬµÄÑ¡Ôñ 33 3.5 MPUÓëDSPµÄÊý¾ÝͨÐÅ·½Ê½ 36 3.6 Ç°ÖÃͨµÀµÄ¿¹»ìµþµÍͨÂ˲¨µç·Éè¼Æ 37 3.7 Êý¾Ý²É¼¯µç· 39 3.8 ´æ´¢Æ÷µÄÑ¡Ôñ 41 µÚËÄÕ ϵͳµÄÈí¼þÉè¼Æ 42 4.1 ϵͳÈí¼þµÄ×ÜÌåÉè¼Æ 42 4.2 DSPµ¥ÔªµÄÈí¼þÉè¼Æ 42 4.2.1 DSPϵͳµÄ¿ª·¢»·¾³ 42 4.2.2 DSPµ¥ÔªÖи÷¹¦ÄÜÄ£¿éµÄ³ÌÐòÁ÷³Ì 44 µÚÎåÕ ½áÂÛÓëÕ¹Íû 48 5.1 ½áÂÛ 48 5.2 Õ¹Íû 48 ²Î¿¼ÎÄÏ× 50 ÖÂл 52 ¸½Â¼ 53 ¡¾ÕªÒª¡¿:±¾ÎÄÊ×ÏȽéÉÜÁ˹úÄÚÍâµçÁ¦ÏµÍ³Ð³²¨²âÁ¿×°ÖõÄÏÖ×´£¬·ÖÎöÁËÊý×ÖÐźŴ¦ÀíоƬÔÚµçÁ¦ÏµÍ³ÖеÄÓ¦ÓÃÇé¿ö¡£È»ºó£¬½éÉÜÁËг²¨µÄ»ù±¾¸ÅÄî¡¢ºâÁ¿Ö¸±êºÍÊýѧ·ÖÎö·½·¨¡£×îºóÕë¶ÔµçÁ¦²¿ÃźÍʵ¼ÊÓ¦ÓõÄÐèÒª£¬Ìá³öÁËÒÔIntel80c196kc×÷ΪÖ÷¿ØÖÆÆ÷£¬Êý×ÖÐźŴ¦ÀíоƬTMS320C32×÷Ϊ´ÓCPUµÄÖ÷´ÓʽӲ¼þϵͳÉè¼Æ¹¹Ïë¡£ ÂÛÎÄÍê³ÉÁË»ù±¾µÄÓ²¼þµç·Éè¼ÆºÍÈí¼þËã·¨Éè¼Æ¡£ Ó²¼þÉè¼Æ·½Ã棬¸ù¾ÝµçÁ¦ÏµÍ³ÖÐÊý¾Ý²É¼¯ºÍ´¦ÀíµÄʵ¼ÊÌص㣬Éè¼ÆÁËÐźŵĶàͨµÀ²ÉÑù±£³ÖºÍʱ·Öת»»µç·£¬ÊµÏÖÁ˶à·ÐźŵÄͬ²½²ÉÑùºÍ¿ìËÙת»»¡£Ö÷´ÓCPUÖ®¼ä²ÉÓÃË«¶Ë¿ÚRAM½øÐÐÊý¾Ý½»»»£¬³ä·Ö·¢»ÓÁË΢¿ØÖÆÆ÷µÄ¿ØÖƹ¦ÄܺÍDSPоƬµÄÊý×ÖÐźŴ¦ÀíÓÅÊÆ¡£ Èí¼þËã·¨·½Ã棬ϵͳ²ÉÓô«Í³µÄ¿ìËÙ¸µÁ¢Ò¶±ä»»(FFT)£¬¶Ô²É¼¯µÄµçѹºÍµçÁ÷ÐźŽøÐÐƵÆ×·ÖÎö¡£ÂÛÎÄÖл¹Ïêϸ·ÖÎöÁËÐźŵIJÉÑùÎÊÌ⣬ÒÔ¼°ÐźŵÄÊý×ÖÂ˲¨ÎÊÌâ¡£³õ²½Éè¼ÆÁ˶Բɼ¯Êý¾Ý½øÐмÆËãºÍ´¦ÀíµÄÏà¹ØÈí¼þËã·¨£¬ÊµÏÖÁ˶Ôг²¨µÄ²âÁ¿¹¦ÄÜ¡£ ±¾×°ÖÿÉÒÔ¿ìËÙ£¬×¼È·µÄ½øÐÐг²¨µÄ²âÁ¿ºÍ·ÖÎö¡£ ¡¾¹Ø¼ü´Ê¡¿:DSP(Êý×ÖÐźŴ¦ÀíÆ÷)£¬Ð³²¨£¬Í¬²½²ÉÑù£¬Êý×ÖÂ˲¨ Development of a Device for Measuring Harmonic in Electric Power System Based on DSP ¡¾Abstract¡¿:By analyzing the situations of the electric harmonic monitoring equipments home and abrod,aiming at the demand of power department and the practical applications.The application of Digital Signal Processor in the electric power systems is introduced in this paper. The paper briefly analyzes concepts of harmonic and methods of computing harmonic£¬and then proposes the hardware and software structure which uses industrial level microcotroller Intel 80c196kc as master CPU£¬TMS320C32 as the slave CPU£¬and can perform measurement and processing. The instrument used to implement techniques is an advanced data acquisition and parallel processing system aimed specifically at continuous real-time power system signal monitoring .A high speed and high precision distributed data acquisition and processing system is designed based on DSP. The synchronous data sampling of supervising system is realized by multi-channel collection retaining and A/D transformation circuit. The concepts of fiitering and smpling power system voltage and current signals for harmonic analysis using the fast Fourier transform( FFT) algorithm by a digital signal processor are introduced.According to the special characters of the electric power system£¬the algorithm of DSP is presented. The equipment can provide comprehensive and accurate recording data for harmonic analysis. ¡¾Keywords¡¿:DSP(Digital Signal Processor)£¬Harmonic£¬Synchronous sampling£¬Filtering
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