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Design of a New Enhanced Torque In-Wheel Switched Reluctance Motor With Divided Teeth for Electric Vehicles

机译:电动汽车用新型分齿增强转矩轮毂内开关磁阻电动机的设计

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摘要

This paper presents a new switched reluctance motor (SRM) with wide speed range for the application of electric vehicles. It has an in-wheel structure for direct drive and multiple teeth per stator pole to enhance output torque. Also, the number of rotor poles is more than that of stator teeth. A 6/16 three-phase in-wheel SRM with the concepts of multi-teeth per stator pole and more rotor poles than stator teeth has been proposed for analysis. The torque performance of the topology with multi-teeth per stator pole is proven by theoretical analysis. Moreover, a new design formula is introduced for a novel combination of stator and rotor poles. The parameters of the motor are optimized by genetic algorithm method for the maximum torque output. Then the torque performance is computed by finite-element method (FEM) and compared with its counterparts, including three-phase 6/8 and 6/10 SRMs. The FEM results exhibit higher torque density for the proposed topology.
机译:本文提出了一种适用于电动汽车的新型变速磁阻电动机(SRM),其转速范围广。它具有直接驱动的轮内结构,每个定子磁极有多个齿,以提高输出扭矩。而且,转子极数比定子齿数多。提出了一个6/16三相轮内SRM,其概念是每个定子极多齿,转子极多于定子齿。通过理论分析证明了每定子极齿为多齿的拓扑的转矩性能。此外,为定子和转子磁极的新颖组合引入了新的设计公式。通过遗传算法对电动机的参数进行了优化,以实现最大转矩输出。然后,通过有限元法(FEM)计算扭矩性能,并将其与包括三相6/8和6/10三相SRM的扭矩性能进行比较。对于所提出的拓扑,有限元结果显示出更高的扭矩密度。

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