电测与仪表
電測與儀錶
전측여의표
ELECTRICAL MEASUREMENT & INSTRUMENTATION
2015年
16期
32-37
,共6页
曹晶%曾祥君%杨毅%刘慧琼
曹晶%曾祥君%楊毅%劉慧瓊
조정%증상군%양의%류혜경
配电网%单相接地%多端行波%单端行波%故障定位
配電網%單相接地%多耑行波%單耑行波%故障定位
배전망%단상접지%다단행파%단단행파%고장정위
distribution networks%single-phase-ground%multi-terminal traveling wave%single-terminal traveling wave%fault location
针对配电网网络结构复杂,分支多,故障定位困难,提出了一种单端、多端行波相结合的配电网单相接地故障定位方法。首先根据配电网拓扑结构,依据最优配置原则,选取需安装行波定位装置的配变终端,然后通过奇异值分解( SVD)对故障行波信号进行检测,应用多端行波故障选线算法判别障故障线路。在此基础上,各行波定位装置采用小波波形相关性方法,检测两个相关反射波时间差进行单端行波测距。仿真结果表明,该方法在某台定位装置失灵、时间记录错误时也能实现配电网的故障准确定位,具有很强的容错性和较高的定位精度。
針對配電網網絡結構複雜,分支多,故障定位睏難,提齣瞭一種單耑、多耑行波相結閤的配電網單相接地故障定位方法。首先根據配電網拓撲結構,依據最優配置原則,選取需安裝行波定位裝置的配變終耑,然後通過奇異值分解( SVD)對故障行波信號進行檢測,應用多耑行波故障選線算法判彆障故障線路。在此基礎上,各行波定位裝置採用小波波形相關性方法,檢測兩箇相關反射波時間差進行單耑行波測距。倣真結果錶明,該方法在某檯定位裝置失靈、時間記錄錯誤時也能實現配電網的故障準確定位,具有很彊的容錯性和較高的定位精度。
침대배전망망락결구복잡,분지다,고장정위곤난,제출료일충단단、다단행파상결합적배전망단상접지고장정위방법。수선근거배전망탁복결구,의거최우배치원칙,선취수안장행파정위장치적배변종단,연후통과기이치분해( SVD)대고장행파신호진행검측,응용다단행파고장선선산법판별장고장선로。재차기출상,각행파정위장치채용소파파형상관성방법,검측량개상관반사파시간차진행단단행파측거。방진결과표명,해방법재모태정위장치실령、시간기록착오시야능실현배전망적고장준학정위,구유흔강적용착성화교고적정위정도。
As the actual complex distribution network has many branches, it is very difficult to find the fault point.A single-phase-ground fault location method based on single-terminal traveling wave and multi-terminal traveling wave is put forward in this paper.Firstly, according to the optimal allocation principle for the topology structure of the distri-bution network, there are only several location equipments are installed in distribution grid.Singular value decomposi-tion ( SVD) is applied to detect the fault travelling signals.The fault line is selected by using multi-terminal traveling wave fault line selection algorithm.On this basis, the travelling wave location device that uses wavelet graphic correla-tion method to detect the time difference of wave heads is proposed.The accuracy of fault location still can be guaran-teed even though a locating device breaks down, records the wrong time date in distribution systems.The result of simulation indicates that this algorithm has the strong fault tolerance and high fault location accuracy.