A Novel Fault Diagnosis Technique for IPMSM Using Voltage Angle

Z. Ullah, Seung-Tae Lee, J. Hur
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引用次数: 6

Abstract

Different kinds of faults in the motor can occur, which causes various and independent variations in the magnetic flux distribution of machine and consequently causes different changes in the behavior of the motor and its performance. These changes reflect in the machine flux linkage, which can be determined by the machine voltage. A novel fault detection and identification technique for inter-turn-short fault and irreversible demagnetization fault in interior permanent magnet synchronous motor are presented in this paper. The deviation caused by the inter-turn short fault and irreversible demagnetization fault in the angle between $d$-axis voltage and $q$-axis voltage, which is termed as voltage or load angle is analyzed. It is observed that in case of demagnetization fault the voltage angle increases, whereas in case of inter-turns short fault it decreases. In this study, we used this unique phenomenon for the detection and identification of these faults. The proposed method is verified by simulation and experiments.
一种基于电压角的IPMSM故障诊断新方法
电动机可以发生各种各样的故障,这些故障会引起电机磁通分布的各种独立的变化,从而引起电动机的行为和性能的不同变化。这些变化反映在机器磁链上,这可以通过机器电压来确定。提出了一种针对内置式永磁同步电动机匝间短路故障和不可逆退磁故障的故障检测与识别新技术。分析了由匝间短故障和不可逆退磁故障引起的d轴电压与q轴电压夹角的偏差,即电压或负载夹角。结果表明,退磁故障时电压角增大,匝间短故障时电压角减小。在这项研究中,我们利用这种独特的现象来检测和识别这些断层。仿真和实验验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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