电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2013年
5期
1217-1222
,共6页
李小鹏%何正友%武骁%杨健维%林圣
李小鵬%何正友%武驍%楊健維%林聖
리소붕%하정우%무효%양건유%림골
输电网%故障定位%固有频率%行波路径%测量装置失效
輸電網%故障定位%固有頻率%行波路徑%測量裝置失效
수전망%고장정위%고유빈솔%행파로경%측량장치실효
transmission network%fault location%natural frequency%propagation path of traveling wave%measurement device invalidation
为解决电网中因测量装置失效而引起故障定位失败的问题,提出一种计及测量装置失效的输电网行波固有频率故障定位方法。根据故障后行波在输电网中的传播规律,首先分析了故障线路与健全线路固有频率对应的行波路径的不同特点,在此基础上,根据线路两端行波路径长度之和与线路全长的比较结果,确定故障线路,同时依据单端频率法计算故障距离。算法考虑了测量装置失效的情况,提出利用相邻线路处的频率信息判断故障线路,进而计算故障距离,实现联网定位。大量基于PSCAD/EMTDC和Matlab的仿真结果表明,该方法不受过渡电阻、故障距离和故障初始角的影响,具有良好的适应性。
為解決電網中因測量裝置失效而引起故障定位失敗的問題,提齣一種計及測量裝置失效的輸電網行波固有頻率故障定位方法。根據故障後行波在輸電網中的傳播規律,首先分析瞭故障線路與健全線路固有頻率對應的行波路徑的不同特點,在此基礎上,根據線路兩耑行波路徑長度之和與線路全長的比較結果,確定故障線路,同時依據單耑頻率法計算故障距離。算法攷慮瞭測量裝置失效的情況,提齣利用相鄰線路處的頻率信息判斷故障線路,進而計算故障距離,實現聯網定位。大量基于PSCAD/EMTDC和Matlab的倣真結果錶明,該方法不受過渡電阻、故障距離和故障初始角的影響,具有良好的適應性。
위해결전망중인측량장치실효이인기고장정위실패적문제,제출일충계급측량장치실효적수전망행파고유빈솔고장정위방법。근거고장후행파재수전망중적전파규률,수선분석료고장선로여건전선로고유빈솔대응적행파로경적불동특점,재차기출상,근거선로량단행파로경장도지화여선로전장적비교결과,학정고장선로,동시의거단단빈솔법계산고장거리。산법고필료측량장치실효적정황,제출이용상린선로처적빈솔신식판단고장선로,진이계산고장거리,실현련망정위。대량기우PSCAD/EMTDC화Matlab적방진결과표명,해방법불수과도전조、고장거리화고장초시각적영향,구유량호적괄응성。
In allusion to fault location failure caused by the invalidation of measurement device in power grid, considering the invalidation of measurement device a fault location method based on natural frequencies of transmission lines is proposed. According to the law, by which post-fault traveling wave propagates in transmission network, firstly, different features of propagation paths of traveling wave corresponding to natural frequencies of faulty line and healthy line are analyzed and on this basis according to the result of comparing the sum of the length of propagation paths of traveling wave measured at the two terminals of faulty line with the full length of the faulty line, the faulty line can be determined; then the fault distance can be calculated by natural frequency-based fault location method. In the proposed method, considering invalidation of measurement device the faulty line is distinguished by frequency information of adjacent transmission lines, and then the fault distance is determined. A lot of results of simulation based on PSCAD/EMTDC and Matlab show that the proposed method is independent to transition resistance, fault distance and initial phase angle when the fault occurred, so it possesses good adaptability.