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Impact of pole and slot combination on noise and vibrations of flux-switching PM machines

机译:磁极和槽缝组合对磁通切换永磁电机噪声和振动的影响

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Flux-Switching machines (FSM) have been gaining attention during the last decade. Their electromagnetic behavior has been extensively studied for various topologies, i.e. U-core and E-core, simple (wound field or PM) and hybrid excitations FSM machines. Even though noise and vibrations of electromagnetic origins can be important drawbacks, depending on the application, only few studies are analyzing these aspects. As a result, this paper aims at understanding the sound power level of U-core flux-switching permanent magnet (FSPM) machines whose rotors have different number of poles. The stator of the extensively studied 12/10 stator/rotor pole FSPM machine (12s10rp) serves as a basis for investigating 12s11rp, 12s13rp and 12s14rp configurations. Electromagnetic pressure is calculated from the Maxwell stress tensor where the magnetic flux density is obtained with 2-D finite element analysis (FEA). It then serves as input of a mechanical and acoustical 3-D FEA model of the stator with carter.
机译:在过去的十年中,助焊剂开关机(FSM)受到了越来越多的关注。它们的电磁行为已针对各种拓扑进行了广泛研究,即U形磁芯和E形磁芯,简单(绕线或PM)和混合励磁FSM机器。尽管电磁源的噪声和振动可能是重要的缺点,但根据应用的不同,只有很少的研究在分析这些方面。因此,本文旨在了解转子磁极数不同的U型磁芯磁通转换永磁(FSPM)电机的声级。经过广泛研究的12/10定子/转子极FSPM电机(12s10rp)的定子是研究12s11rp,12s13rp和12s14rp配置的基础。电磁压力是根据麦克斯韦应力张量计算得出的,其中磁通密度是通过二维有限元分析(FEA)获得的。然后,它用作带有卡特定子的机械和声学3-D FEA模型的输入。

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