Feasibility of Sinusoidal Flux Drive Design of Reluctance Motor for Reducing Torque and Input Current Ripples with Three-Leg Inverter

Masaki Iida, T. Kusumi, K. Umetani, E. Hiraki
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引用次数: 1

Abstract

Reluctance motors, represented by the switched reluctance motor (SRM) and the synchronous reluctance motor (SynRM), are attractive for vehicle propulsion owing to their high thermal tolerance and simple mechanical construction. However, the SRM exhibits large torque and large input current ripples, deteriorating driving comfort and battery lifespan. Furthermore, a driving system of the SRM requires the special inverter topology with additional switching or rectifying devices, leading to the cost-up. Meanwhile, the SynRM does not have these drawbacks, although this motor tends to be difficult to cover the wide range of the torque and the rotation speed required for vehicle propulsion because of large phase flux induction. To solve the obstacles of these conventional reluctance motors, this paper proposes a novel reluctance motor. The proposed reluctance motor is based on magnetization by the sinusoidal phase flux waveform, whereby the torque and input current ripples are eliminated using a common three-leg inverter without inducing large phase magnetic flux. This paper presents the operating principles of the proposed reluctance motor as well as analysis and simulation results in comparison with the SRM and the SynRM. As a result, the proposed reluctance motor is elucidated to reduce the torque and input current ripples with the three-leg inverter. Furthermore, the proposed reluctance motor can improve the torque range and rotating speed range compared to the SynRM because of the sinusoidal flux waveform with reduced amplitude. These results imply feasibility of the proposed motor for vehicle propulsion.
磁阻电机正弦磁链驱动设计的可行性,以减少转矩和三腿逆变器的输入电流脉动
以开关磁阻电机(SRM)和同步磁阻电机(SynRM)为代表的磁阻电机,由于其高耐热性和简单的机械结构,在车辆推进中具有很大的吸引力。然而,SRM表现出大扭矩和大输入电流波动,驾驶舒适性和电池寿命恶化。此外,SRM的驱动系统需要特殊的逆变器拓扑结构和额外的开关或整流器件,导致成本上升。与此同时,SynRM没有这些缺点,尽管这种电机往往难以覆盖车辆推进所需的大范围扭矩和转速,因为大相磁链感应。为了解决传统磁阻电机存在的问题,本文提出了一种新型磁阻电机。所提出的磁阻电机基于正弦相位磁通波形的磁化,其中使用普通的三腿逆变器消除转矩和输入电流波纹,而不会产生大的相位磁通。本文介绍了所提出的磁阻电机的工作原理,并与SRM和SynRM进行了分析和仿真比较。研究结果表明,采用三腿逆变器的磁阻电机可以减小转矩和输入电流纹波。此外,由于磁链波形呈正弦波,且幅值减小,因此磁阻电机的转矩范围和转速范围较SynRM电机有所提高。这些结果表明所提出的电机用于车辆推进是可行的。
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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