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Magnetic Interaction and Winding Polarities Investigation in a Double-Rotor Switched Reluctance Machine

机译:双转子开关磁阻电机的磁相互作用和绕组极性研究

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Double-rotor switched reluctance machine (DRSRM) integrates two switched reluctance machines (SRMs) into one housing, providing a compact solution for hybrid power trains so that one DRSRM can replace two electric machines. This paper presents a new DRSRM design in which the stator flux barriers are removed and the flux lines in the interior and exterior machines are more evenly distributed. The effects of stator flux barriers are investigated, the loss mechanism in the DRSRM is analyzed, and finally, various winding configurations are compared. It is concluded that flux lines are more evenly distributed in the stator, reducing iron saturation and losses, while the interior and exterior machines can be independently controlled without sacrificing performance. Moreover, winding polarity in DRSRM is critical to reduce stator iron saturation and thereby losses.
机译:双转子开关磁阻电机(DRSRM)将两台开关磁阻电机(SRM)集成到一个壳体中,为混合动力系统提供了紧凑的解决方案,因此一个DRSRM可以替代两台电机。本文提出了一种新的DRSRM设计,其中消除了定子磁通屏障,并且内部和外部机器中的磁通线分布更加均匀。研究了定子磁通屏障的影响,分析了DRSRM中的损耗机理,最后比较了各种绕组结构。结论是,磁通线在定子中分布更均匀,从而降低了铁的饱和度和损耗,同时可以独立控制内部和外部电机而不会牺牲性能。此外,DRSRM中的绕组极性对于降低定子铁的饱和度并因此降低损耗至关重要。

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