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考虑气隙偏心时发电机定子匝间短路位置对电磁转矩波动特性的影响

何玉灵 王发林 唐贵基 蒋宏春 袁兴华

电工技术学报2017,Vol.32Issue(7):11-19,9.
电工技术学报2017,Vol.32Issue(7):11-19,9.

考虑气隙偏心时发电机定子匝间短路位置对电磁转矩波动特性的影响

Effect of Stator Inter-Turn Short Circuit Position on Electromagnetic Torque of Generator with Consideration of Air-Gap Eccentricity

何玉灵 1王发林 1唐贵基 1蒋宏春 1袁兴华1

作者信息

  • 1. 华北电力大学机械工程系 保定 071003
  • 折叠

摘要

Abstract

This paper investigated the effect of the stator inter-turn short circuit position on the electromagnetic torque of generator by theoretical analysis,numerical simulation,and experiment verification.Firstly,the detailed expressions of the electromagnetic torque respectively under static air-gap eccentricity fault and static air-gap eccentricity & stator inter-turn short circuit composite faults are deduced to obtain the mapping relationship between the shorted position and the electromagnetic torque.Then,the experiment study and the simulation work are taken based on the MJF-30-6 type fault simulating generator.The finite element method(FEM) model of this generator was set up in Ansoft to calculate the electromagnetic torque under the composite faults with different shorted positions.The experimental tested data had the consistent result with the theoretical analysis and simulation data.It is shown that,the mapping relation of the electromagnetic torque and the angle between the shorted position and the min air-gap position is generally in cosine pattern.The closer the shorted position is near the min air-gap position,the more mean electromagnetic torque would be decreased,while the 2nd and 4th components would be increased more.The achievement obtained in this paper is a significant supplement to the stator inter-turn short circuit analysis and would be beneficial to the practical monitoring and diagnosis on this fault.

关键词

定子匝间短路/气隙偏心/同步发电机/电磁转矩

Key words

Stator inter-turn short circuit/static air-gap eccentricity/synchronous generator/electromagnetic torque

分类

信息技术与安全科学

引用本文复制引用

何玉灵,王发林,唐贵基,蒋宏春,袁兴华..考虑气隙偏心时发电机定子匝间短路位置对电磁转矩波动特性的影响[J].电工技术学报,2017,32(7):11-19,9.

基金项目

国家自然科学基金项目(51307058)、河北省自然科学基金项目(E2014502052、E2015502013)和中央高校科研业务费专项基金项目(2015ZD27)资助. (51307058)

电工技术学报

OA北大核心CSCDCSTPCD

1000-6753

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