LCT·¢µç»úÀø´Å²Ù×÷˵Ã÷Êé0708£¨ÖÐÓ¢Îİ棩 ÁªÏµ¿Í·þ

·¢²¼Ê±¼ä : ÐÇÆÚÁù ÎÄÕÂLCT·¢µç»úÀø´Å²Ù×÷˵Ã÷Êé0708£¨ÖÐÓ¢Îİ棩¸üÐÂÍê±Ï¿ªÊ¼ÔĶÁf40d328858fafab069dc02fc

LCT΢»úÀø´Å¿ØÖÆÆ÷ ²Ù×÷˵Ã÷Êé LCT Digital Excitation Controller User¡¯s Guide 5£®3£®2£®1£®4 PSS2AÄ£ÐͲÎÊý Parameter of PSS2A model£º 5.00 ¢Å ¦Ø ISO DC- Tw1(S)£º 5.00 ¢Å¦Ø¸ôֱʱ¼ä³£ÊýTw1(S)£º 5.00 ¢Æ ¦Ø ISO DC- Tw2(S)£º 5.00 ¢Æ¦Ø¸ôֱʱ¼ä³£ÊýTw2(S)£º¢Ç P- ISO DC- Tw3(S)£º 5.00 ¢ÇP-¸ôֱʱ¼ä³£ÊýTw3(S)£º 5.00 ¢ÈP-¸ôֱʱ¼ä³£ÊýTw4(S)£º 5.00 ¢ÉPSS ³¬Ç°Ê±¼ä³£ÊýT1(S): 0.35 ¢ÊPSS Öͺóʱ¼ä³£ÊýT2(S): 4.00 ¢ËPSS ³¬Ç°Ê±¼ä³£ÊýT3(S): 0.15 ¢ÌPSS Öͺóʱ¼ä³£ÊýT4(S): 0.05

¢È P- ISO DC- Tw4(S)£º 5.00 ¢É PSS -T1(S): 0.35 ¢Ê PSS -T2(S): 4.00 ¢Ë PSS -T3(S): 0.15 ¢Ì PSS -T4(S): 0.05 ¢Í¦ØÂ˲¨Æ÷²ÎÊýT6(S): 0.02 ¢ÎP-Â˲¨Æ÷²ÎÊýT7(S): 0.02 ¢ÏбÆÂÂ˲¨Æ÷²ÎÊýT8(S): 3.20 ¢ÐбÆÂÂ˲¨Æ÷²ÎÊýT9(S): 0.64

¢Í ¦Ø- T6(S): 0.02 ¢Î P - T7(S): 0.02 ¢Ï T8(S): 3.20 ¢Ð T9(S): 0.64 ¢ÑPSS ³¬Ç°Ê±¼ä³£ÊýT10(S): 0.02 ¢ÒPSS Öͺóʱ¼ä³£ÊýT11(S): 0.02 ¢ÓPSS Öͺóʱ¼ä³£ÊýT12(S): 0.02 ¢ÔPSS ·Å´ó±¶ÊýKs1: 01.00 ¢Õ·Å´ó±¶ÊýKs2: 01.00 ¢Ö·Å´ó±¶ÊýKs3: 01.00 ¢×Â˲¨Æ÷³Ë·½ÊýM: 5 ¢ØÂ˲¨Æ÷³Ë·½ÊýN: 5 ¢Ñ PSS - T10(S): 0.02 ¢Ò PSS - T11(S): 0.02 ¢Ó PSS - T12(S): 0.02 ¢Ô PSS Amp - Ks1: 01.00 ¢Õ Amp - Ks2: 01.00 ¢Ö Amp - Ks3: 01.00 ¢× £Í: 5 ¢Ø £Î: 5

ÆäÊýѧģÐÍÈçÏ£ºThe math model is as following shows:

40

LCT΢»úÀø´Å¿ØÖÆÆ÷ ²Ù×÷˵Ã÷Êé LCT Digital Excitation Controller User¡¯s Guide ÖáËÙ¶ÈSpeed¦Øµç¹¦ÂÊElectricalPowersTw11+sTw1sTw21+sTw211+sT6+¦¤Pm(1+sT8)¡ÆM(1+sT9)+Ks3N+¡Æ-¦¤PaPesTw31+sTw3sTw41+sTw4Ks21+sT7¦¤PeKs11+sT11+sT21+sT31+sT4 1+sT101+sT1111+sT12ÏÞ·ùLimit¦¤Vpss²Ù×÷£ºKeyborad operation: ÉϼüUP Key£¨^£©£ºÏòÉÏÒƶ¯¹â±ê¡£Up the cursor . ϼüDown Key£¨v£©£ºÏòÏÂÒƶ¯¹â±ê¡£Down the cursor .

È¡Ïû¼üQuit Key£¨È¡ÏûESC£©£ºÍË»ØÉÏÒ»¼¶²Ëµ¥¡£Back to the previous menu.

È·ÈϼüEnter Key£¨È·ÈÏENTER£©£º°´Ò»´Î£¬½øÈëÐÞ¸Ä״̬¡££¨²ÎÕÕ 5.3.2.1.1½Ú£© Press a time,go into the modifying state. £¨Refer to section 5.3.2.1.1£©. 5£®3£®2£®1£®5 ·¢µç»úת×Óµçѹ¸º·´À¡ÏµÊý Negative Feedback Factor

of Generator Rotor Voltage£º

¢Åת×Óµçѹ¸º·´À¡¦Â: 0.10

¢Å Urotor NEG FB ¦Â: 0.10 ×Ô²¢ÀøÀø´ÅϵͳÖз¢µç»úת×Óµçѹ¸º·´À¡ÏµÊý¦ÂºãΪÁã¡£In static excitation system generator rotor voltage negative feedback factor ¦Â is always zero.

41

LCT΢»úÀø´Å¿ØÖÆÆ÷ ²Ù×÷˵Ã÷Êé LCT Digital Excitation Controller User¡¯s Guide ²Ù×÷£ºKeyborad operation:

È¡Ïû¼üQuit Key£¨È¡ÏûESC£©£ºÍË»ØÉÏÒ»¼¶²Ëµ¥¡£Back to the previous menu.

È·ÈϼüEnter Key£¨È·ÈÏENTER£©£º°´Ò»´Î£¬½øÈëÐÞ¸Ä״̬¡££¨²ÎÕÕ 5.3.2.1.1½Ú£© Press a time,go into the modifying state. £¨Refer to section 5.3.2.1.1£©.

5£®3£®2£®1£®6 ¶î¶¨Ö±Á÷Á¿²ÉÑùÖµ(HEX) Rated Sampling Value of DC

Value£¨HEX£©£º

¢ÅÀø´ÅCT²ÉÑùÖµ: 6000H ¢Æת×ÓµçÁ÷²ÉÑùÖµ: 6000H ¢Çת×Óµçѹ²ÉÑùÖµ: 6000H ¢Èµ÷½ÚÆ÷×ÜÊä³öµçÁ÷: 6000H

¢Å EXC CT SA Value: 6000H ¢Æ Irotor SA Value: 6000H ¢Ç Urotor SA Value: 6000H ¢È REG I joint : 6000H ¢Éµ÷½ÚÆ÷±¾¹ñÊä³öµçÁ÷: 6000H ¢É REG Cubicle Output I: 6000H

ÉÏͼÖÐ(1)ÖÁ(5)Ïî·Ö±ðÀ´×ÔÓÚͨµÀ²ÎÊý²éѯ²Ëµ¥ÏµڢøÒ³¡°²ÉIfdc¡±¡¢¡°²ÉIfdi¡¯¡±¡¢¡°²ÉVfd¡±¡¢¡°²ÉId¡±¡¢¡°²É±¾Id¡±¡£In above picture (1) to (5) item partly come from channel parameters consult menu¡¯s eighth page ¡°£ÓIfdc¡±, ¡°£ÓIfdi¡±, ¡°£ÓVfd¡±, ¡°s£ÓId¡±, ¡°£Ó£ÌId¡±.

²Ù×÷£ºKeyborad operation:

ÉϼüUP Key£¨^£©£ºÏòÉÏÒƶ¯¹â±ê¡£Up the cursor . ϼüDown Key£¨v£©£ºÏòÏÂÒƶ¯¹â±ê¡£Down the cursor .

È¡Ïû¼üQuit Key£¨È¡ÏûESC£©£ºÍË»ØÉÏÒ»¼¶²Ëµ¥¡£Back to the previous menu. 42

LCT΢»úÀø´Å¿ØÖÆÆ÷ ²Ù×÷˵Ã÷Êé LCT Digital Excitation Controller User¡¯s Guide

È·ÈϼüEnter Key£¨È·ÈÏENTER£©£º°´Ò»´Î£¬½øÈëÐÞ¸Ä״̬¡££¨²ÎÕÕ 5.3.2.1.1½Ú£© Press a time,go into the modifying state. £¨Refer to section 5.3.2.1.1£©. 5£®3£®2£®1£®7 µÍÀøÏÞÖƲÎÊý Under Excitation Limit Parameters£º

ÈçÓÒͼËùʾ¸÷µã¶¨ÒåÈçÏ£ºAs right QµÍÀøÏÞÖÆÇúÏßpicture shows all definition is

Under Excitation Limit Linefollowing:

P(P3,Q2)µÚÒ»µãÓй¦ÎªP1£¬µÚ¶þµãÓй¦ÎªP2£¬0(P1,Q1)µÚÈýµãÓй¦ÎªP3£¬µÚÒ»¶þµãÎÞ¹¦ÎªQ1£¬

(P2,Q1)µÚÈýµãÎÞ¹¦ÎªQ2£¬Ê§ÀøÇл»ÎÞ¹¦ÔöÁ¿Îª¦¤

¦¤QQ¡£The first active power is P1, the ±£»¤ÇúÏßProtect Linesecond is P2, the third is P3, the first

and second reactive power is Q1, the third is Q2, lost excitation switch to reactive power addition is ¦¤Q.

µ±Q´óÓÚµÍÀø±ÕËøÎÞ¹¦ÖµÊ±£¬³ÌÐò½«²»ÔÙ×öµÍÀøÏÞÖƼ°±£»¤¼ÆËã¡£When Q is larger than reactive power value which blocking under excitation limit, program will not be under excitation limit and protecting calculation.

¢ÅµÚÒ»µãÓй¦(MW): 000 ¢ÆµÚ¶þµãÓй¦(MW): 070 ¢ÇµÚÈýµãÓй¦(MW): 125 ¢ÈµÚÒ»¶þµãÎÞ¹¦(MVAR): -040 ¢ÉµÚÈýµãÎÞ¹¦(MVAR): -020 ¢ÊʧÀøÇл»ÎÞ¹¦ÔöÁ¿(MVAR): 020 ¢ËµÍÀø±ÕËøÎÞ¹¦ (£¥Qn): 35 ¢ÌʧÀø±£»¤Ê±¼ä(S): 1.0

¢Å 1st Point P (MW): 000 ¢Æ 2nd Point P (MW): 070 ¢Ç 3rd Point P (MW): 125 ¢È 1st 2nd Point Q (MVAR): -040 ¢É 3rd Point £Ñ (MVAR): -020 ¢Ê LosEXC Qinc(MVAR): 020 ¢Ë UnderEXC LAT £Ñ(£¥Qn): 35 ¢Ì LosEXC Protect T(S): 1.0

²Ù×÷£ºKeyborad operation:

ÉϼüUP Key£¨^£©£ºÏòÉÏÒƶ¯¹â±ê¡£Up the cursor . ϼüDown Key£¨v£©£ºÏòÏÂÒƶ¯¹â±ê¡£Down the cursor .

43