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Analysis of a Novel Magnetic-Geared Dual-Rotor Motor With Complementary Structure

机译:新型结构互补的齿轮减速双转子电动机的分析

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摘要

A permanent-magnet dual-rotor motor is particularly suitable for constructing the power split device in hybrid electric vehicle application. This paper proposes a new magnetic-geared dual-rotor motor (MGDRM) design with complementary structure, in which both the inner and outer rotors are divided into three modules with a proper angular displacement for each other along the axis direction. This complementary design makes the flux linkage symmetrical and total cogging torque significantly reduced, without impairing the torque production. A simplified magnetic circuit model is developed to illustrate the complementary principle. By finite-element analysis (FEA), the effectiveness of such complementary structure is verified through the comparison with the conventional design. A prototype motor has been manufactured, and experiments have been carried out. Both FEA and experiments show that this new MGDRM offers symmetrical back-EMF waveforms, smaller cogging torque, and lower torque ripple.
机译:永磁双转子电动机特别适合于构造混合动力电动车辆应用中的动力分配装置。本文提出了一种具有互补结构的新型磁控双转子电动机(MGDRM)设计,该结构将内转子和外转子都分成三个模块,每个模块沿轴向方向具有适当的角位移。这种互补的设计使磁链对称且总齿槽转矩显着降低,而不会影响转矩产生。开发了简化的磁路模型来说明互补原理。通过有限元分析(FEA),通过与常规设计的比较验证了这种互补结构的有效性。已经制造出原型电动机,并且已经进行了实验。 FEA和实验均表明,这种新型MGDRM提供对称的反电动势波形,较小的齿槽转矩和较低的转矩波动。

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