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Simple analytical derivation of magnetic flux profile eliminating source current ripple and torque ripple of switched reluctance motors for electric vehicle propulsion

机译:磁通曲面的简单分析推导,消除电动车辆推进器开关磁阻电动机的源电流纹波和扭矩脉动

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This paper proposes a simple control technique for switched reluctance motors to eliminate both the source current ripple and the torque ripple simultaneously. The proposed control is a current tracking control based on a pre-computed magnetic flux profile. This profile is derived using a simple analytical SRM model without the magnetic saturation. Conventionally, the magnetic saturation is commonly utilized for limiting excessive magnetic flux induction to improve the torque output. However, in the proposed control, the magnetic flux profile is utilized for limiting the magnetic flux by control. By controlling without the magnetic saturation, elimination of the source current ripple and the torque ripple can be achieved regardless to the output power. Along with theoretical derivation of the magnetic flux profile, an experiment is carried out to evaluate the proposed control. The results revealed suppression of the source current ripple and the torque ripple simultaneously in comparison with the conventional square-wave current control.
机译:本文提出了一种简单的控制技术,用于切换磁阻电动机,以同时消除源电流纹波和扭矩脉动。所提出的控制是基于预计磁通量分布的电流跟踪控制。此配置文件使用简单的分析SRM模型导出,无需磁饱和度。通常,磁饱和通常用于限制过量磁通量诱导以改善扭矩输出。然而,在所提出的控制中,磁通量曲线用于通过控制来限制磁通量。通过在没有磁饱和的情况下控制,无论输出功率如何,都可以实现源电流纹波的消除和扭矩脉动。除了磁通曲线的理论推导之外,还进行实验以评估所提出的控制。结果揭示了与传统的方波电流控制相比同时抑制源电流纹波和扭矩脉动。

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