电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2013年
10期
2932-2937
,共6页
同步相量测量%动态条件%双端参数%故障测距
同步相量測量%動態條件%雙耑參數%故障測距
동보상량측량%동태조건%쌍단삼수%고장측거
synchronous phasor measurement%dynamic conditions%double-end parameter%fault location
为提高故障测距的准确性,提出了一种基于相量测量单元(phasor measurement unit,PMU)动态同步相量测量的输电线路双端故障测距算法。通过分析单端故障测距算法因线路对端数据未知而导致的故障测距误差,引入同步相量测量单元,并应用动态同步相量测量算法,有效提高动态同步相量测量的精确性和实时性;以全球定位系统(global position system,GPS)为时间基准,将故障时刻线路双端相量测量结果,应用于正序网络的测距方程,进行准确地故障定位。仿真实验表明,所提算法充分利用线路两端的故障信息,提高了故障测距的准确性。
為提高故障測距的準確性,提齣瞭一種基于相量測量單元(phasor measurement unit,PMU)動態同步相量測量的輸電線路雙耑故障測距算法。通過分析單耑故障測距算法因線路對耑數據未知而導緻的故障測距誤差,引入同步相量測量單元,併應用動態同步相量測量算法,有效提高動態同步相量測量的精確性和實時性;以全毬定位繫統(global position system,GPS)為時間基準,將故障時刻線路雙耑相量測量結果,應用于正序網絡的測距方程,進行準確地故障定位。倣真實驗錶明,所提算法充分利用線路兩耑的故障信息,提高瞭故障測距的準確性。
위제고고장측거적준학성,제출료일충기우상량측량단원(phasor measurement unit,PMU)동태동보상량측량적수전선로쌍단고장측거산법。통과분석단단고장측거산법인선로대단수거미지이도치적고장측거오차,인입동보상량측량단원,병응용동태동보상량측량산법,유효제고동태동보상량측량적정학성화실시성;이전구정위계통(global position system,GPS)위시간기준,장고장시각선로쌍단상량측량결과,응용우정서망락적측거방정,진행준학지고장정위。방진실험표명,소제산법충분이용선로량단적고장신식,제고료고장측거적준학성。
To improve the accuracy of fault location, a two-terminal fault location algorithm based on dynamic synchronous phasor measurement by phasor measurement unit (PMU) is proposed. As for single-terminal fault location algorithm the fault location error caused by unknown data at opposite terminal is analyzed; then by means of leading in synchronous PMU and applying dynamic synchronous phasor measurement algorithm, both accuracy and real-time performance of dynamic synchronous phasor measurement can be effectively improved. Using global position system (GPS) as time reference, the phasor data measured at both terminals of the transmission line at the moment when the fault occurred is applied to fault location equation of positive sequence network to locate the fault accurately. Simulation results show that the proposed algorithm can fully utilize the fault information at both terminals of the transmission line, thus the accuracy of fault location is improved.