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Transverse flux permanent magnet motor with double-C stator hoops and flux-concentrated rotor for in-wheel drive electric vehicle

机译:具有双C定子箍的横向磁通永磁电机和用于轮内驱动电动车辆的磁通集中转子

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This paper proposes a novel transverse flux permanent magnet motor (TFPMM) with double-C stator hoops. The proposed TFPMM carries significantly increased power density due to higher coefficient of utilization of the volume compared with the traditional double-side counterparts. The topology, principle and parametric calculation of the TFPMM are described elaborately. The magnetic field and characteristics analysis are conducted by three-dimensional finite element method (3D FEM) including flux density, EMF and winding inductance, and cogging torque are obtained to verify the feasibility of proposed TFPMM design. The mechanism of cogging torque of the proposed double-C stator hoops TFPMM is also analyzed. The results of transient simulation of power density well align with the theoretical analysis, which confirm that the power density is significantly increased due to its higher volumetric utilization ratio.
机译:本文提出了一种具有双C定子箍的新型横向磁通永磁电动机(TFPMM)。与传统的双侧对应物相比,所提出的TFPMM具有较高的利用系数,由于体积的利用系数较高,因此具有显着提高的功率密度。精心描述TFPMM的拓扑,原理和参数计算。磁场和特性分析由包括磁通密度,EMF和绕组电感的三维有限元方法(3D FEM)进行,并且获得齿槽扭矩以验证所提出的TFPMM设计的可行性。还分析了所提出的双C定子箍TFPMM的齿槽扭矩的机理。瞬态模拟功率密度孔对齐的结果与理论分析,确认由于其较高的体积利用率,该功率密度显着增加。

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