An investigation of multiphase excitation nodes of a 10/8 switched reluctance motor with short flux path to maximize its average torque

Z. Ye, T. Martin, J. Balda
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引用次数: 3

Abstract

The switched reluctance motor (SRM) with short-flux path and multiphase excitation mode has become a good candidate for electric vehicle applications due to its higher torque to weight ratio. This paper describes an investigation of multiphase excitation modes of a five-phase 10/8 SRM with short-flux path in the case of more practical phase-current waveforms. For the purpose of maximizing the average electromagnetic torque of the SRM, the phase torque and instantaneous torque of the SRM are analyzed and simulated corresponding to typical excitation modes. From these simulations, an effective approach for average torque maximization at any given speed is proposed in terms of maximization of the average phase torque in one electrical cycle by choosing optimal turn-on and turn-off angles. Simulations illustrating this new approach are also included.
短磁通路径下10/8开关磁阻电机多相激励节点的研究,以最大化其平均转矩
短磁通多相励磁方式的开关磁阻电机(SRM)由于具有较高的转矩重量比,已成为电动汽车应用的理想选择。本文研究了具有短磁通路的5相10/8 SRM在实际相电流波形下的多相激励模式。为了使SRM的平均电磁转矩最大化,对典型励磁模式下SRM的相位转矩和瞬时转矩进行了分析和仿真。通过这些仿真,提出了在给定速度下,通过选择最优导通角和最优关断角使一个电周期内的平均相转矩最大化的有效方法。文中还对这种新方法进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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