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Analysis and Design Optimization of V-Shaped Permanent Magnet Vernier Motor for Torque Density Improvement

机译:V形永磁游标电动机对扭矩密度改进的分析与设计优化

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摘要

This paper presents an inner rotor vernier motor featuring the V-shaped permanent magnet (PM) rotor topology; the torque performance of the proposed motor is compared to that of a conventional V-Shaped interior PM motor. The volume of the proposed motor is kept 35% lower than that of the conventional motor. The equations of back electromotive force and reactance are presented, and the air gap flux densities and flux density distributions of both motors are analyzed and compared. A 2D finite element analysis is conducted at three different operating speeds in order to investigate the performance of both motors. The torque components indicate that the proposed motor achieves superior torque performance (i.e., higher average torque and lower torque ripple) at a reduced volume, for the same input current density. Moreover, the torque–current angle characteristic curves at different current densities are obtained and compared. The losses, efficiencies, and power factors of both motors are compared and discussed. Finally, multi-objective optimization of the proposed vernier motor is carried out to further enhance its performance. The results of the analysis prove that the proposed motor achieves better torque density owing to the vernier effect and superior torque performance due to the V-shaped rotor topology.
机译:本文介绍了一种内转子vernier电动机,具有V形永磁体(PM)转子拓扑结构;将所提出的电动机的扭矩性能与传统的V形内部PM电动机的扭矩性能进行比较。所提出的电动机的体积比传统电机的体积低35%。提出了背部电动势和电抗的方程,分析并比较两个电动机的气隙磁通密度和磁通密度分布。 2D有限元分析以三种不同的操作速度进行,以研究两个电动机的性能。对于相同的输入电流密度,扭矩分量表示所提出的电动机以减小的体积实现优异的扭矩性能(即,较高的平均扭矩和更低的扭矩波动)。此外,获得并比较了不同电流密度的扭矩 - 电流角特征曲线。比较和讨论了两个电机的损失,效率和电源因素。最后,进行了建议的游标电机的多目标优化,以进一步提高其性能。分析结果证明,由于V形转子拓扑结构,所提出的电动机由于Vernier效果而达到更好的扭矩密度和较高的扭矩性能。

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