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Analysis of Double-Layer Permanent-Magnet Flux Reversal Machines With Different Permanent Magnet Arrangements in Stator

机译:定子不同永磁装置双层永磁磁通反转机器分析

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摘要

This article presents two novel double-layer permanent-magnet flux reversal (PMFR) machines to improve the torque capability, namely Machine A and Machine B. Both the Machine A and Machine B are designed as the consequent-pole PMFR machines. The rotors of two machines are identical, which adopt Halbach array permanent-magnet (PM) in the rotor slot to guide the flux into the rotor teeth to reduce the leakage flux. However, the PM relative positions of two PMFR machines on the adjacent stator teeth are different, which result in different pole numbers of air-gap flux density. The operation principles and performances of two machines are introduced and compared in this article. In addition, the air gap fields of two machines by PM magnetomotive force (MMF) are analyzed and the contribution of the dominant air-gap flux density harmonics to torque is revealed.
机译:本文介绍了两种新型双层永磁磁通反转(PMFR)机器,以改善扭矩能力,即机器A和机器B.机器A和机器B都设计为随后的极点PMFR机器。两台机器的转子是相同的,在转子槽中采用哈巴肖阵永磁体(PM),以将通量引导到转子齿中以减少泄漏磁通。然而,两个PMFR机器上的PM相对位置在相邻定子齿上是不同的,这导致不同的气隙磁通密度的极数。在本文中引入并比较了两台机器的操作原理和性能。另外,分析了PM磁动力(MMF)的两台机器的气隙场,并揭示了主要的空气间隙磁通密度谐波对扭矩的贡献。

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