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文章摘要
基于多信息融合的自适应单相接地故障在线定位研究与应用
Research and Application of Adaptive Single Phase Ground Fault Online Locating Based on Multi-Information Fusion
Received:April 20, 2018  Revised:April 20, 2018
DOI:
中文关键词: 配电自动化  单相接地  多源融合  模糊C均值聚类  自适应、故障定位
英文关键词: distribution automation  single-phase grounding  multi-source fusion  fuzzy C-means clustering  self-adaptation  fault location
基金项目:广东省科学技术厅应用型科技研发专项资金项目(2015B012128006);国家电网科技项目(52020116000F)
Author NameAffiliationE-mail
Xu Guang* Zhuhai Xujizhi Power Automation Ltd,Zhuhai xuguangzone@163.com 
Liu Manyu State Grid Beijing Electric Power Company,Beijing Liumanyu@bj.sgcc.com.cn 
WANG Xingnian Zhuhai Xujizhi Power Automation Ltd,Zhuhai 13928041213@139.com 
Yang Qiao Zhuhai Xujizhi Power Automation Ltd,Zhuhai yangqiao@xjgc.sgcc.com.cn 
Qin Weidong Zhuhai Xujizhi Power Automation Ltd,Zhuhai qinweidong@xjgc.sgcc.com.cn 
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中文摘要:
      为解决各种配电终端、故障指示器故障信息、故障录波文件接入配电主站实现基于配电主站的配电网单相接地故障在线定位,根据配电网单相接地故障特征提取故障录波零序电流相关性系数、三相电流突变量相间波形相关系数以及基于广义S变换基础上的特征频段的能量矩、相对信息熵这4种互补的单相接地故障的特征量,基于配电主站,采用模糊C均值聚类分析法融合4种故障特征量,以解决单一故障判据带来的误判,提升在线定位正确性。仿真结果表明,基于配电主站在线定位策略适用于各种接线方式、各种运行工况,定位准确率和可靠性高。
英文摘要:
      In order to meet all kinds of distribution terminal, fault indicator fault information and fault recorder file connected to the main station of distribution automation, the single-phase ground fault location based on distribution automation master station is realized. Based on the characteristics of single phase grounding fault in distribution network, the four types single phase grounding faults characteristics about the zero sequence current correlation coefficient, the phase correlation coefficient of three phase current mutation, Energy moment in characteristic frequency band and relative information entropy based on the generalized S transformation are extracted. Based on the main power distribution station, the fuzzy C-means clustering method is used to fuse four kinds of fault features to solve the misjudgment caused by a single fault criterion and improve the correctness of online location. The simulation results show that the on-line positioning strategy based on the distribution automation master station is suitable for various wiring modes and various working conditions, and the positioning accuracy and reliability are high.
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