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A New Coaxial Magnetic Gear Using Stationary Permanent Magnet Ring

机译:一种新的同轴磁齿轮,使用固定式永磁环

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This paper proposes a new topology of coaxial magnetic gear (CMG) using stationary permanent magnet ring (PMR) between the permanent-magnet (PM) inner rotor and the salient-pole outer rotor without PMs, aiming at improving the robustness of the outer rotor while the torque density is maintained. The fundamental operation of the proposed topology is the modulation of the magnetic field produced by the PMR due to the outer-rotor salient poles, such that appropriate harmonics having the same number of poles as the PM inner rotor can be produced in the inner airgap. By using the finite element method (FEM), the airgap flux density and static characteristics of the proposed CMG are analyzed. Moreover, a quantitative comparison between the conventional CMG and the proposed one is conducted to verify the validity of the proposed design.
机译:本文提出了在永磁体(PM)内转子和凸极外转子之间的固定永磁环(PMR)的同轴磁齿轮(CMG)的新拓扑,而无需PMS,旨在改善外转子的稳健性虽然保持扭矩密度。所提出的拓扑的基本操作是由于外转子凸极由PMR产生的磁场的调制,使得可以在内部气隙中产生具有与PM内转子相同数量的极数的适当谐波。通过使用有限元方法(FEM),分析了所提出的CMG的气隙助焊剂密度和静态特性。此外,进行传统CMG与所提出的定量比较以验证所提出的设计的有效性。

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