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Analysis and Optimization of Back EMF Waveform of a Flux-Switching Permanent Magnet Motor

机译:磁通开关永磁电动机反电动势波形的分析与优化

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摘要

Flux-switching permanent magnet (FSPM) motors have a doubly salient structure, the magnets being housed in the stator and the stator winding comprising concentrated coils. They have attracted considerable interest due to their essentially sinusoidal phase back electromotive force (EMF) waveform. However, to date, the inherent nature of this desirable feature has not been investigated in detail. Thus, a typical three-phase FSPM motor with 12 stator teeth and ten rotor poles is considered. It is found that, since there is a significant difference in the magnetic flux paths associated with the coils of each phase, this results in harmonics in the coil back EMF waveforms being cancelled, resulting in essentially sinusoidal phase back EMF waveforms. In addition, the influence of the rotor pole-arc on the phase back EMF waveform is evaluated by finite-element analysis, and an optimal pole-arc for minimum harmonic content in the back EMF is obtained and verified experimentally.
机译:磁通开关永磁(FSPM)电机具有双凸极结构,这些磁体被容纳在定子中,并且定子绕组包括集中线圈。由于它们的正弦相位反电动势(EMF)波形,它们引起了极大的兴趣。然而,迄今为止,尚未详细研究该期望特征的固有性质。因此,考虑了具有12个定子齿和10个转子磁极的典型三相FSPM电动机。已经发现,由于与每一相的线圈相关的磁通路径存在显着差异,因此这导致线圈反电动势波形中的谐波被抵消,从而导致基本上正弦的相位反电动势波形。此外,通过有限元分析评估了转子极弧对反相位电动势波形的影响,并获得了反EMF中最小谐波含量的最佳极电弧并进行了实验验证。

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