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Design and comparison of a new type of magnetic-planetary-geared permanent magnet brushless machine for high torque density

机译:一种新型的高转矩密度磁行星齿轮永磁无刷电机的设计与比较

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This paper proposes a new type of magnetic-planetary-geared permanent magnet brushless (MPG-PMBL) machines for hybrid electric vehicles (HEVs), which can achieve both power split and combination flexibly, and obtain relatively high efficiency, high torque density, low noise and small size simultaneously. For further improvement of motor performance, four topologies of MPG-PMBL machines are designed based on the different combination of the numbers of magnetic planetary gears and the layers of permanent magnets (PMs). The electromagnetic performances of the four machines are analyzed and compared in detail by the 2D finite element method. The results show the MPG-PMBL with six magnetic planetary gears and two-layer PMs possesses higher torque output capacity.
机译:本文提出了一种新型的混合动力汽车用磁行星齿轮永磁无刷(MPG-PMBL)机器,该机器可以实现功率分配和组合的灵活性,并获得相对较高的效率,较高的扭矩密度,较低的功率。同时噪音小。为了进一步改善电机性能,基于磁性行星齿轮数量和永磁体(PM)层的不同组合,设计了MPG-PMBL电机的四种拓扑。通过二维有限元方法对这四台机器的电磁性能进行了详细分析和比较。结果表明,具有六个磁性行星齿轮和两层PM的MPG-PMBL具有更高的扭矩输出能力。

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