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Detection and Classification of Demagnetization and Interturn Short Faults of IPMSMs

机译:IPMSM的退磁和匝间短路故障的检测和分类

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摘要

We present a method that detects and classifies demagnetization and interturn short faults (ISFs), which degrade the performance of permanent-magnet synchronous machines (PMSMs). Demagnetization and ISF are analyzed using models; we focused on changes of magnitude and angle of currents in the synchronous frame. Those two faults increase the magnitude of the input current compared with normal machines at the same load torque. However, our analysis suggests that demagnetization causes increase in the current angle β, whereas ISF causes decrease in β. We exploit this difference in response to classify the fault if one is detected in the PMSM. Experimental studies on interior-type PMSMs verify that demagnetization and ISF can be detected and classified in various operation conditions.
机译:我们提出了一种检测和分类退磁和匝间短路故障(ISF)的方法,这些方法会降低永磁同步电机(PMSM)的性能。使用模型分析退磁和ISF;我们专注于同步帧中电流的大小和角度的变化。与相同的负载转矩下的普通电机相比,这两个故障会增加输入电流的大小。但是,我们的分析表明,退磁会导致电流角β增大,而ISF会导致β减小。如果在PMSM中检测到故障,我们将利用这种差异来对故障进行分类。对内部型PMSM的实验研究证明,可以在各种操作条件下检测到退磁和ISF并进行分类。

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