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Design and Comparison of Six-Phase Fault-Tolerant Interior Permanent Magnet Motor and Surface-Mounted Permanent Magnet Motor for Electric Vehicles

机译:电动汽车六相容错内装永磁电动机与表面贴装式永磁电动机的设计与比较

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In this paper, we design and investigate the six-phase in-wheel fault-tolerant surface-mounted permanent magnet motor (SPM) and interior permanent synchronous motor (IPM) for electric vehicles (EVs) application. Firstly, the stator of the motor is designed based on the anti-short-circuit method and the main design parameters of both motors are listed. Then the electromagnetic performance and the motor loss of both motors are analyzed by finite-element analysis (FEA). In addition, the thermal analysis is conducted by utilizing Motor-CAD, which shows that both SPM and IPM encounter with magnet overheating problems. Therefore, the magnet segmentation basing on the skin depths calculation is adopted to reduce the eddy-current loss. Meanwhile, the thermal performance of both motors with non-segmented and segmented magnets under different working conditions are presented. Finally, the optimized model is achieved through the comparison between the two types of fault-tolerant permanent magnet synchronous motors (FTPMSM).
机译:在本文中,我们设计和研究了用于电动汽车(EV)的六相轮毂容错表面安装永磁电动机(SPM)和内部永磁同步电动机(IPM)。首先,基于抗短路方法设计了电动机的定子,并列出了这两种电动机的主要设计参数。然后通过有限元分析(FEA)分析两个电动机的电磁性能和电动机损耗。此外,利用Motor-CAD进行热分析,结果表明SPM和IPM都遇到磁体过热问题。因此,采用基于趋肤深度计算的磁体分割,以减少涡流损耗。同时,介绍了两种带有非分段和分段磁体的电动机在不同工作条件下的热性能。最后,通过比较两种类型的容错永磁同步电动机(FTPMSM)来获得优化模型。

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