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Analysis and optimization of EMF waveform of a novel axial field flux-switching permanent magnet machine

机译:新型轴向磁场磁通切换永磁电机的电动势波形分析与优化

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Axial field flux-switching permanent magnet motor is a novel PM machine of doubly-salient structure, with magnets and concentrated windings in the stator. This novel machine is suitable for electric vehicle because of its short axial length, high power and torque density. A typical 3-phase 12/10-pole AFFSPM motor is designed and prototyped. In order to gain sinusoidal back-EMF waveform, the influence of the design parameters, such as the stator tooth width, the magnet size, the stator yoke thickness, the stator tooth shape, the rotor pole width, and the rotor pole shape, on the back-EMF is investigated based on 3D FE analysis. It shows that the harmonics of back-EMF can be significantly reduced and the waveform of the back-EMF is sinusoidal by optimizing the stator tooth shape, the rotor pole width and shape. The experiments are conducted and the results are in agreement with the theoretical analysis.
机译:轴向磁场通量转换永磁电动机是一种新型的双凸极结构永磁电机,在定子中装有磁体和集中绕组。这种新颖的机器因其轴向长度短,功率大且扭矩密度大而适用于电动汽车。设计并制作了典型的三相12/10极AFFSPM电动机。为了获得正弦反电动势波形,设计参数(例如定子齿宽,磁体尺寸,定子磁轭厚度,定子齿形,转子磁极宽度和转子磁极形状)的影响基于3D有限元分析对反电动势进行了研究。结果表明,通过优化定子齿的形状,转子磁极的宽度和形状,可以显着降低反电动势的谐波,并且反电动势的波形为正弦波。进行了实验,结果与理论分析相符。

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