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Magnetostatic field analysis and diagnosis of mixed eccentricity fault in switched reluctance motor

机译:开关磁阻电机混合偏心故障的静磁场分析与诊断

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摘要

In this article, a novel view of airgap magnetic field analysis of a switched reluctance motor under mixed eccentricity to provide a precise fault diagnosis based on the three-dimensional finite element method is presented. The analytical nature of this method makes it possible to simulate a reliable and precise model by considering the end effects and axial fringing effects. The results of the three-dimensional finite element analysis of a 6/4 switched reluctance motor, such as flux linkages, terminal inductance per phase, and static torque for various eccentric motor conditions, are obtained, evaluated, and discussed. The diagnostic evaluation is based on monitoring these parameter variations and analyzing the shape of the self-inductance in the stator windings via the multiple signal classification pseudo-spectrum. Fault analysis and detection in a switched reluctance motor demonstrate that the presented scheme can assure the detection reliability and sensitivity of an eccentricity fault in a switched reluctance motor. To the best knowledge of the authors, such an analysis has not been carried out previously.
机译:本文提出了一种基于混合偏心的开关磁阻电机气隙磁场分析的新颖观点,以基于三维有限元方法提供精确的故障诊断。这种方法的分析性质使得可以通过考虑端效应和轴向边缘效应来模拟可靠而精确的模型。获得,评估和讨论了一个6/4开关磁阻电动机的三维有限元分析结果,例如磁链,每相的终端电感以及各种偏心电动机条件下的静态转矩。诊断评估基于监视这些参数变化并通过多信号分类伪频谱分析定子绕组中自感的形状。开关磁阻电动机的故障分析和检测表明,所提出的方案可以保证开关磁阻电动机的偏心故障的检测可靠性和灵敏度。据作者所知,以前尚未进行过这种分析。

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