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Three-dimensional finite-element-model investigation of axial-flux PM BLDC machines with similar pole and slot combination for electric vehicles

机译:电动汽车相似磁极和槽组合的轴流式永磁无刷直流电机的三维有限元模型研究

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Axial-flux permanent-magnet brushless-dc (AFPM BLDC) machines with concentrated windings are very attractive choices for direct-drive applications due to their high torque-density, high efficiency, and extreme compact construction. Particularly they are suitable to be used in in-wheel electric vehicles. For this purpose two different AFPM BLDC machine topologies with similar pole and slot combination are designed, and cogging torque, winding inductance, output torque, and unbalanced torque exerted on bearing are obtained for the two 3.4 kW motors. High precision three-dimensional (3-D) finite-element analysis is used to achieve the performance of two motor topologies accurately.
机译:具有集中绕组的轴流永磁无刷直流(AFPM BLDC)电机具有高转矩密度,高效率和极其紧凑的结构,因此是直接驱动应用的极具吸引力的选择。特别地,它们适合用于轮毂电动车辆中。为此,设计了两种具有相似极和槽组合的不同AFPM BLDC机器拓扑,并获得了两个3.4 kW电动机的齿槽转矩,绕组电感,输出转矩和施加在轴承上的不平衡转矩。高精度三维(3-D)有限元分析用于精确实现两种电机拓扑的性能。

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