A criterion function for broken bar fault diagnosis in induction motor under load variation using wavelet transform

J. Faiz, B. Ebrahimi, B. Asaie, R. Rajabioun, H. Toliyat
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引用次数: 36

Abstract

In this paper a novel criterion function is introduced to diagnose the breakage in rotor bars, which uses wavelet transform (WT) to process the stator current signal in faulty induction motors. This criterion function facilitates the diagnosis of fault in induction motors under load variation, precisely. The proposed function is based on wavelet coefficients of stator current in a specific frequency band. Meanwhile, in this paper broken rotor bar in induction motor is detected using spectrum analysis of stator current. It is also shown that increasing the load makes an increase in harmonic components amplitude of a faulty induction motor. A Time stepping finite element (TSFE) method is used for modeling broken rotor bar faults in induction motors. In this modeling, the effects of the spatial distribution of the stator winding, non uniform air-gap permeance, geometrical and physical characteristics of different parts of the motor, and finally non-linearity of the core materials are taken into account. The proposed algorithm is applied to the stator current of a healthy and faulty induction motor. The simulation results are obtained and their accuracy is verified by experimental results.
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基于小波变换的异步电动机断条故障诊断准则函数
本文采用小波变换对故障异步电动机定子电流信号进行处理,提出了一种新的诊断转子棒断的判据函数。该判据函数便于对负载变化情况下异步电动机的故障进行准确的诊断。该函数基于特定频段定子电流的小波系数。同时,本文采用定子电流谱分析的方法对异步电动机转子断条进行检测。结果表明,负荷的增加使故障异步电动机谐波分量幅值增大。采用时间步进有限元法(TSFE)对异步电动机转子断条故障进行建模。在该模型中,考虑了定子绕组的空间分布、非均匀气隙磁导率、电机不同部件的几何和物理特性以及磁芯材料的非线性等因素的影响。将该算法应用于正常和故障异步电动机的定子电流分析。得到了仿真结果,并用实验结果验证了仿真结果的准确性。
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