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Design optimization of brushless permanent magnet hub motor drive using FEA

机译:无刷永磁枢纽电机驱动的设计优化

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Brushless permanent magnet drive is a key technology for electric powered two wheelers. This paper presents a design of a high efficient and high-power-density external rotor, 3-phase brushless permanent magnet do motor for use in electrically powered two wheelers. Cogging torque reduction methods are applied to optimize the design with the decrease of cogging torque and increase of the developed torque as objective. The air gap length, teeth width, teeth shape and winding configuration are also selected for the design variables respectively. Parasitic effect like unbalanced radial force, easy manufacturability and low process time is also taken into consideration. Static and dynamic characteristics of the motor are obtained using 2D FEA (finite element analysis). With the simulation results, sample motors are fabricated and tested on a electric scooter the experimental results are shown to confirm the validity of the optimization results.
机译:无刷永磁体驱动是电动电动两轮的关键技术。本文介绍了一种高效,高功率密度的外转子,3相无刷永磁体DO电动机,用于电动的两个轮椅。应用齿槽扭矩减少方法以优化设计随着齿槽扭矩的降低和显影扭矩的增加而优化设计。还分别为设计变量选择空气间隙长度,齿宽度,齿形和卷绕配置。寄生效果如不平衡的径向力,也考虑了易于制造性和低处理时间。使用2D FEA获得电动机的静态和动态特性(有限元分析)。利用仿真结果,在电动踏板踏板上制造和测试样品电机,实验结果显示证实了优化结果的有效性。

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