fault location, two terminal asynchronous ranging method, line parameter estimation, Huber robust estimation, total least square method ,"/> 基于线路参数估计的输电线路故障测距

吉林大学学报(信息科学版) ›› 2022, Vol. 40 ›› Issue (5): 752-758.

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基于线路参数估计的输电线路故障测距

冯 骁, 刘 骉, 孙 贺, 孔德健   

  1. 国网冀北电力有限公司 超高压分公司, 北京 102488
  • 收稿日期:2022-01-23 出版日期:2022-10-10 发布日期:2022-10-10
  • 作者简介:冯骁(1990— ), 男, 北京人, 国网冀北电力有限公司工程师, 主要从事超高压输电线路运检及变电站综合自动化研究, (Tel)86-18101172456(E-mail)15200099808@ 163. com。
  • 基金资助:
    国家自然科学基金资助项目(41704145)

Fault Location of Transmission Line Based on Line Parameter Estimation

FENG Xiao, LIU Biao, SUN He, KONG Dejian   

  1. Ultra High Voltage Branch, State Grid Jibei Electric Power Company Limited, Beijing 102488, China
  • Received:2022-01-23 Online:2022-10-10 Published:2022-10-10

摘要: 针对传统测距方法不考虑线路参数变化情况造成故障定位不准确的问题, 采用双端不同步的测距方法, 并利用 Huber 抗差估计优化总体最小二乘法, 解决了最小二乘法对线路参数估计过程中由于粗差存在造成的 线路参数估计不准确的问题, 从而提高了线路故障测距的准确度。 通过 Matlab 仿真验证了该方法较传统测距 方法线路参数估计准确度和故障测距精度更高, 且测距结果不受故障位置和故障类型的影响。

关键词: 故障测距, 双端不同步测距法, 线路参数估计, Huber 抗差估计, 总体最小二乘法 

Abstract: The traditional fault location method has lower accuracy due to ignoring the change of line parameters. In order to improve accuracy of line fault location, two-terminal asynchronous location is used and total least square method is optimized by Huber robust estimation to reduce the effect of inaccurate line parameter estimation which is resulted from existed error when adopting total least square method. Matlab simulation shows that improved method is more accurate than traditional method in line parameter estimation and fault location accuracy. And the fault location results which are not affected by the fault location and fault type is also verified by simulation.

Key words: fault location')">

fault location, two terminal asynchronous ranging method, line parameter estimation, Huber robust estimation, total least square method

中图分类号: 

  • TP13