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Dual rotor flux switching permanent magnet machines with phase-group concentrated-coil windings for high performance

机译:具有相位组集中线圈绕组的双转子磁通切换永磁电机,可实现高性能

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摘要

This paper proposes a novel dual rotor radial field flux switching permanent magnet machine (FSPMM) with phase-group concentrated-coil (PGCC) windings and two misaligned rotors to obtain high performance, including high torque density and low cogging torque, as well as low torque ripple. The proposed FSPMM features a new combination of stator slots and rotor poles, which is determined by the winding configurations. The PGCC windings are adopted to obtain a unity displacement winding factor, and enhance the flux focusing effects together with the use of spoke-type PM constructions. The unaligned arrangement of two rotors will help to not only achieve further flux magnification by an alternate operating principle for PM flux concentration, but also suppress the cogging torque. To highlight the advantages of the proposed FSPMM, two conventional FSPMMs with typical machine configurations having concentrated windings are adopted for performance comparison based on a finite element method (FEM) using JMAG-Designer.
机译:本文提出了一种新型的双转子径向磁场磁通量切换永磁电机(FSPMM),该电机具有相组集中线圈(PGCC)绕组和两个未对准的转子,以获得包括高转矩密度和低齿槽转矩以及低转矩的高性能。转矩脉动。提出的FSPMM具有定子槽和转子极的新组合,这由绕组配置决定。 PGCC绕组用于获得单位位移绕组因子,并与辐条型PM结构一起使用,从而增强磁通聚焦效果。两个转子不对齐的布置不仅将通过用于PM磁通量浓度的替代工作原理帮助进一步实现磁通量放大,而且还将抑制齿槽转矩。为了突出所提出的FSPMM的优势,基于JMAG-Designer的有限元方法(FEM),采用具有典型电机配置且绕组集中的两个常规FSPMM进行性能比较。

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