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基于极点对称模态分解的配电网单相接地故障区段定位技术
引用本文:殷志华,孙国强,丁建忠,吕峰,袁海星,卫志农.基于极点对称模态分解的配电网单相接地故障区段定位技术[J].电力自动化设备,2019,39(6).
作者姓名:殷志华  孙国强  丁建忠  吕峰  袁海星  卫志农
作者单位:河海大学可再生能源发电技术教育部工程研究中心,江苏南京,210098;国网无锡供电公司,江苏无锡,214061
基金项目:国网江苏省电力公司科技项目(J2017143-2)
摘    要:配电网发生单相接地故障后,系统中将产生丰富的暂态电气量。利用故障点上游暂态零序电流幅值远大于故障点下游及正常线路的特征,提出一种基于暂态零序电流极点对称模态分解(ESMD)的配电网故障区段定位方法。基于实际配电网线路参数搭建典型缆-线混联仿真模型,对故障后暂态零序电流进行极点对称模态分解并构造相应的暂态能量函数,将构造所得的暂态能量函数作为评价各测点暂态零序电流幅值强弱的指标进行故障区段定位。仿真结果表明所提方法可有效提取故障特征,对各种故障工况适应性强,且各测点仅需上传1个暂态能量值,可有效降低通信要求、节约硬件投资成本。

关 键 词:配电网  单相接地故障  极点对称模态分解  故障区段定位

Fault section location method for single-phase grounding fault in distribution network based on ESMD
YIN Zhihu,SUN Guoqiang,DING Jianzhong,L? Feng,YUAN Haixing and WEI Zhinong.Fault section location method for single-phase grounding fault in distribution network based on ESMD[J].Electric Power Automation Equipment,2019,39(6).
Authors:YIN Zhihu  SUN Guoqiang  DING Jianzhong  L? Feng  YUAN Haixing and WEI Zhinong
Affiliation:Research Center for Renewable Energy Generation Engineering, Ministry of Education, Hohai University, Nanjing 210098, China,Research Center for Renewable Energy Generation Engineering, Ministry of Education, Hohai University, Nanjing 210098, China,State Grid Wuxi Power Supply Company, Wuxi 214061, China,State Grid Wuxi Power Supply Company, Wuxi 214061, China,State Grid Wuxi Power Supply Company, Wuxi 214061, China and Research Center for Renewable Energy Generation Engineering, Ministry of Education, Hohai University, Nanjing 210098, China
Abstract:Single-phase grounding fault in distribution network generates abundant electrical transient quantities in the system. Based on the characteristic that the magnitude of transient zero-sequence current at upstream of the fault point is much larger than that at the downstream of the fault point and normal line, the fault section location method based on ESMD(Extreme-point Symmetric Mode Decomposition) is proposed for distribution network. Based on line parameters of actual distribution network, a typical cable-line hybrid simulation model is established, with which, the transient zero-sequence current is decomposed by ESMD and the transient energy function is constructed. The transient energy function is used as an index to evaluate the magnitude of the transient zero-sequence current of each measurement point for fault section location. The simulative results show that the proposed method can extract fault features effectively, and has strong adaptability to various fault conditions, and each measurement point only needs to upload one transient energy value, which can effectively reduce communication requirements and save hardware investment costs.
Keywords:distribution network  single-phase grounding fault  ESMD  fault section location
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