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基于多幅值脉冲电流的电气虚接故障诊断研究

赵思傲 王玉峰 邴晨阳 耿天宇 李立伟

电机与控制应用2026,Vol.53Issue(6):558-566,9.
电机与控制应用2026,Vol.53Issue(6):558-566,9.DOI:10.12177/emca.2026.171

基于多幅值脉冲电流的电气虚接故障诊断研究

Research on Loose Electrical Connection Fault Diagnosis with Multi-Amplitude Pulse Currents

赵思傲 1王玉峰 1邴晨阳 2耿天宇 2李立伟3

作者信息

  • 1. 辽宁科技大学,电子与信息工程学院,辽宁 鞍山 114051
  • 2. 中车青岛四方机车车辆股份有限公司,山东 青岛 266111
  • 3. 山东大学 计算机科学与技术学院,山东 青岛 266237
  • 折叠

摘要

Abstract

[Objective]To ensure the reliability of electrical connections in cable circuits,this paper proposes a method for diagnosing loose electrical contact faults based on multi-amplitude pulse currents.[Methods]Firstly,the variation of contact resistance with key parameters such as temperature and contact area was analyzed through finite element simulation under both normal and loose contact states.Then,a self-developed electrical connection reliability testing device was used to apply pulse currents of different amplitudes,and the contact resistance and temperature were measured under normal and loose contact states,obtaining the variation curve of contact resistance with pulse current amplitude.Finally,a mathematical model of the relationship between contact resistance and current was established,and a derivative-based fault criterion for loose electrical contact was proposed by analyzing the first and second derivatives.[Results]The simulation and experimental results demonstrated that the proposed diagnostic method effectively identified loose electrical contact faults and improved the reliability of electrical connections.[Conclusion]The proposed derivative-based fault criterion provides a novel approach for diagnosing loose electrical contact faults,demonstrating practical application value.

关键词

多幅值脉冲电流/电气虚接/故障诊断/接触电阻

Key words

multi-amplitude pulse current/loose electrical contact/fault diagnosis/contact resistance

分类

能源科技

引用本文复制引用

赵思傲,王玉峰,邴晨阳,耿天宇,李立伟..基于多幅值脉冲电流的电气虚接故障诊断研究[J].电机与控制应用,2026,53(6):558-566,9.

基金项目

辽宁省教育厅项目(LJKFZ20220190)Liaoning Provincial Education Department Project(LJKFZ20220190) (LJKFZ20220190)

电机与控制应用

1673-6540

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