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Detection of stator short circuit faults in three-phase induction motors using motor current zero crossing instants

机译:使用电动机电流过零瞬间检测三相感应电动机中的定子短路故障

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摘要

Stator faults typically have a significant share amongst the common type of faults in industrial three-phase induction (asynchronous) motors. This paper presents a motor current signature analysis (MCSA)-based diagnostics of the stator winding short circuit fault. This type of fault happens due to the destruction of the turn insulation, and can be very detrimental causing motor shutdown. Instead of traditional MCSA using the motor stator current, in this paper, analysis using the zero crossing time (ZCT) signal of the stator current is presented. The theoretical aspects of the stator short circuit detection are presented. Following that, a diagnostic algorithm utilizing the ZCT signals is proposed. Experiments are performed with real motors, healthy and with shorted stator windings. Frequency analysis of the ZCT signals from the experimental data substantiates the theoretical arguments with significant accuracy.
机译:定子故障通常在工业三相感应(异步)电动机的常见故障类型中占很大比例。本文提出了一种基于电动机电流签名分析(MCSA)的定子绕组短路故障诊断方法。这种类型的故障是由于匝绝缘层的破坏而发生的,并且可能非常有害,导致电机停机。代替使用电动机定子电流的传统MCSA,本文提出了使用定子电流的过零时间(ZCT)信号进行分析的方法。介绍了定子短路检测的理论方面。随后,提出了一种利用ZCT信号的诊断算法。实验是在实际电动机,健康且定子绕组短路的情况下进行的。对来自实验数据的ZCT信号进行频率分析,可以非常准确地证实理论观点。

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