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Influence of Stator and Rotor Pole Number Combinations and Winding Configurations on Flux-Weakening Performance of Switched-Flux PM Machines

机译:定子和转子数量组合的影响和绕组配置对开关通量PM机的磁通量弱化性能

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Based on the dq-axis model, the flux-weakening characteristics of switched-flux permanent magnet machines (SFPMMs) with 12/10, 12/11, 12/13, 12/14 stator/rotor pole number combinations and different winding configurations are analyzed by the flux-linkage method accounting for cross-coupling effect. It is shown that the stator and rotor pole number combinations have significant influence on flux-weakening characteristics of SFPMMs. When SFPMMs have the same structures of stator and rotor, the alternate poles wound one exhibits better flux-weakening capability than all poles wound one. The analyses using the dq-axis model are validated by 2D finite element analysis (FEA).
机译:基于DQ轴模型,交换通量永久磁铁机的磁通量弱化特性(SFPMMS),12/10,12 / 11,12 / 13,12 / 14定子/转子杆数组合和不同的绕组配置磁通连杆法分析了交叉耦合效应的核算。结果表明,定子和转子杆数组合对SFPMMS的助焊剂特性产生了显着影响。当SFPMM具有相同的定子和转子结构时,替代杆缠绕的磁极织物的磁力较好的能力比所有杆缠绕在一起。使用DQ轴模型的分析由2D有限元分析(FEA)验证。

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