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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Multi-Objective Optimization Design of In-Wheel Switched Reluctance Motors in Electric Vehicles
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Multi-Objective Optimization Design of In-Wheel Switched Reluctance Motors in Electric Vehicles

机译:电动汽车轮毂开关磁阻电机的多目标优化设计

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摘要

The method of the optimization design with multi-objectives for switched reluctance motors (SRMs) in electric vehicles (EVs) is proposed in this paper. It is desired that electric motors for EVs have high torque, high efficiency, and high torque density. Thus, the developed optimization function is selected as the correct compromise between the maximum average torque, maximum average torque per copper loss, and maximum average torque per motor lamination volume, by using three weight factors and three base values. The stator and rotor pole arc angles are selected as the optimized variables. Furthermore, the authors also discuss the design requirements and some constraints on the optimization design. The results of the optimization design show that the proposed method meets the requirements of EVs on electric motors well. A prototype of the optimally designed in-wheel SRM for EVs has been manufactured. This paper provides a valuable method to implement the optimal design of SRMs for EVs.
机译:提出了电动汽车开关磁阻电机多目标优化设计的方法。期望用于EV的电动机具有高扭矩,高效率和高扭矩密度。因此,通过使用三个权重因子和三个基本值,可以将开发出的优化功能选为最大平均转矩,每个铜损的最大平均转矩和每个电机叠片体积的最大平均转矩之间的正确折衷。选择定子和转子的极弧角作为优化变量。此外,作者还讨论了设计要求以及对优化设计的一些限制。优化设计结果表明,该方法能够很好地满足电动汽车对电动汽车的要求。 EV的轮毂SRM最佳设计原型已经制造出来。本文为实现电动汽车SRM的优化设计提供了一种有价值的方法。

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