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偏心及返回导体对特高压用计量CT误差影响分析

王欢 项琼 冯宇 徐思恩 朱凯 余也凤

电测与仪表2018,Vol.55Issue(3):116-122,7.
电测与仪表2018,Vol.55Issue(3):116-122,7.

偏心及返回导体对特高压用计量CT误差影响分析

Analysis on the influence of CT error measurement in the UHV under primary winding eccentricity and return conductor influence

王欢 1项琼 2冯宇 1徐思恩 1朱凯 1余也凤1

作者信息

  • 1. 中国科学院电工研究所,武汉430074
  • 2. 华中科技大学电气工程与自动化学院,武汉430074
  • 折叠

摘要

Abstract

In order to make clear the influence of the error of electric energy metering device with electromagnetic interference,a quantitative analysis of error with the primary winding eccentricity and the return conductor on CTs had been developed on the measurement CTs in UHV project.Firstly,the error mathematical model of CTs had been established in cylindrical coordinates by the principle of magnetic circuit balance in order to find the error change of CTs with applied magnetic field at different positions.Secondly,a simulation of two-dimensional electric field had been done with typical size and primary current of measurement CTs in 1 000 kV engineering.It can be found by this simulation that the local saturation will occur when the primary winding offset distance from the center of CTs greater than 1/8 radius,and the error changes greatly which leads to the possibility of excess error limit.In addition,the simulation results indicate that the interference of the magnetic field caused by the return conductor to CTs error can be ignored when the return conductor distance to the CT center greater than 3 times of CTs' radius.Finally,a test loop had been built to obtain the error data with deviation of primary winding of CTs.The experimental data is consistent with the simulation results on the problem of primary winding deviation.

关键词

特高压/电流互感器/有限元分析/外磁场/一次绕组偏心/返回导体

Key words

ultra high voltage (UHV)/current transformer (CT)/finite element analysis/external magnetic field/primary winding eccentricity/return conductor

分类

信息技术与安全科学

引用本文复制引用

王欢,项琼,冯宇,徐思恩,朱凯,余也凤..偏心及返回导体对特高压用计量CT误差影响分析[J].电测与仪表,2018,55(3):116-122,7.

基金项目

国家电网公司资助项目(SGSXDKYPJKJ2015003) (SGSXDKYPJKJ2015003)

电测与仪表

OA北大核心

1001-1390

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