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Theoretical Derivation of Phase Current Profile for Switched Reluctance Motors to Suppress Radial Force Ripple and Torque Ripple

机译:开关磁阻电动机抑制径向纹波和转矩纹波的相电流曲线的理论推导

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Switched reluctance motors (SRMs) are promising for propulsion motors of electric vehicles (EVs) because of their robust mechanical construction and cost effectiveness. However, practical application of SRMs to vehicular propulsion is hindered by comparatively large torque ripple and radial force ripple, which cause noise vibration and acoustic noise. Previous studies have proposed phase current profiles which suppress both ripples. However, in the derivation process of phase current, these previous studies need numerical calculation hindering the EV development speed. The purpose of this paper is to propose a novel phase current profile to suppress both the torque ripple and the radial force ripple of SRMs without numerical calculation. The profile can be straightforwardly calculated using a simple analytical model of the SRMs. In addition, the profile can be determined for any reluctance profiles of actual SRMs. Experiment was carried out to verify the proposed method. The result supported suppression of the torque ripple and the acoustic noise by the proposed method.
机译:开关磁阻电机(SRM)具有强大的机械结构和成本效益,因此有望用于电动汽车(EV)的推进电机。然而,相对较大的转矩波动和径向力波动会阻碍SRM在车辆推进中的实际应用,这会导致噪声振动和声音噪声。先前的研究提出了抑制两个纹波的相电流曲线。然而,在相电流的推导过程中,这些先前的研究需要进行数值计算,从而阻碍了电动汽车的发展速度。本文的目的是提出一种新颖的相电流曲线,以在不进行数值计算的情况下抑制SRM的转矩波动和径向力波动。可以使用SRM的简单分析模型直接计算配置文件。此外,可以为实际SRM的任何磁阻曲线确定轮廓。实验进行了验证,以验证所提出的方法。结果支持了所提出的方法对转矩脉动和声噪声的抑制。

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