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500kV岩平线过电压问题分析和对策
引用本文:刘蔚,蔡汉生,夏小飞. 500kV岩平线过电压问题分析和对策[J]. 广西电力技术, 2010, 0(4): 1-4
作者姓名:刘蔚  蔡汉生  夏小飞
作者单位:[1]广西电网公司电力科学研究院,广西南宁530023 [2]南方电网技术研究中心,广东广州510623
摘    要:对500kV岩平线加装高抗后出现的非全相运行时的工频谐振过电压问题进行了仿真和分析,认为造成岩平线出现过电压的原因主要是高抗补偿度较高、线路未换位造成三相参数不平衡以及高抗中性点电抗取值不合适。提出了解决岩平线过电压问题的技术措施。岩平线按照提出的技术措施进行了改造,改造后的试验结果表明提出的技术措施是有效的。

关 键 词:非全相运行  工频谐振  过电压  高抗

Analysis and Countermeasure of 500 kV Yan-ping Transmission Line Overvoltage Problem
LIU Wei,CAI Han-sheng,XIA Xiao-fei. Analysis and Countermeasure of 500 kV Yan-ping Transmission Line Overvoltage Problem[J]. Guangxi Electric Power Technology, 2010, 0(4): 1-4
Authors:LIU Wei  CAI Han-sheng  XIA Xiao-fei
Affiliation:1. Guangxi Power Grid Electric Power Research Institute, Nanning 530023, China; 2. CSG Technology Research Center, Guangzhou 510623, China)
Abstract:The power frequency resonance overvohage problem of 500 kV Yan-ping transmission line under non-full phase operation after installation of high voltage shunt reactor is analyzed. Reasons of the overvoltage problem are found which are higher compensation degree of high voltage shunt reactor, untransposition of the transmission line and improper neutral reactor value of high voltage shunt reactor. Technical measures that the transmission line is transposed and the neutral reactor value is rechosen are proposed. Yan-ping trasnmission line is modified based on the proposed measures, and test results after the accomplishment of the modification project show that the proposed technology measure is effective.
Keywords:non-full phase operation  power frequency resonance  overvohage  high vohage shunt reactor
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