电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2013年
9期
1-6
,共6页
陆秋瑜%徐飞%胡伟%张建坤%李淼%冯钢
陸鞦瑜%徐飛%鬍偉%張建坤%李淼%馮鋼
륙추유%서비%호위%장건곤%리묘%풍강
失磁保护%系统振荡%电压判据%无功判据%时间判据%机网协调%计算机仿真
失磁保護%繫統振盪%電壓判據%無功判據%時間判據%機網協調%計算機倣真
실자보호%계통진탕%전압판거%무공판거%시간판거%궤망협조%계산궤방진
loss of excitation protection%system swing%voltage criterion%reactive power criterion%timer criterion%coordinated optimization between generator and grid%computer simulation
随着大型发电机组大量投运,失磁故障对系统的危害日益增大.在厂网分开的背景下,如何同时确保发电机和电网的安全稳定运行是一个值得关注的研究课题.针对发电机失磁保护在系统振荡时容易误动或拒动的问题,研究了失磁和振荡两种情况下系统电气量变化规律的不同特征,并结合不同失磁类型的特点,提出了电压、无功和时间三种新型判据,进而设计了计及机网协调的新型失磁保护方案,并给出了相应动作参数的整定方法.计算机仿真实验表明,新型方案可有效区分失磁和振荡现象,具有动作速度快、可靠性高的优点.
隨著大型髮電機組大量投運,失磁故障對繫統的危害日益增大.在廠網分開的揹景下,如何同時確保髮電機和電網的安全穩定運行是一箇值得關註的研究課題.針對髮電機失磁保護在繫統振盪時容易誤動或拒動的問題,研究瞭失磁和振盪兩種情況下繫統電氣量變化規律的不同特徵,併結閤不同失磁類型的特點,提齣瞭電壓、無功和時間三種新型判據,進而設計瞭計及機網協調的新型失磁保護方案,併給齣瞭相應動作參數的整定方法.計算機倣真實驗錶明,新型方案可有效區分失磁和振盪現象,具有動作速度快、可靠性高的優點.
수착대형발전궤조대량투운,실자고장대계통적위해일익증대.재엄망분개적배경하,여하동시학보발전궤화전망적안전은정운행시일개치득관주적연구과제.침대발전궤실자보호재계통진탕시용역오동혹거동적문제,연구료실자화진탕량충정황하계통전기량변화규률적불동특정,병결합불동실자류형적특점,제출료전압、무공화시간삼충신형판거,진이설계료계급궤망협조적신형실자보호방안,병급출료상응동작삼수적정정방법.계산궤방진실험표명,신형방안가유효구분실자화진탕현상,구유동작속도쾌、가고성고적우점.
@@@@As large capacity units is playing an increasily important role, loss of excitation failure has become more and more dangerous to the power system stability. Especially when the power plants and grid are seperated, it is a main concern to guarantee the security operation of both generators and grid. This paper concentrates on the mal-operation or misoperation problems of loss of excitation protection, which happen frequently in system swings. Based on the different generator performances in the two scenarioes and different kinds of loss of excitation failures, three innovative criterions including voltage, reactive power and timer criterions are proposed. Further, a new loss of excitation protection scheme based on the presented criterions is designed, and the scheme parameters tuning method is also introduced. The computer simulation results show that the new scheme can accurately distinguish the phenomena of loss of excitation from power system swings, and shows the advantages of high action speed and high reliability. This work is suppoprted by National High Technology R&D Program of China (863 Program) (No. 2012AA050207), and National Natural Science Foundation of China (No. 51190101).