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Rotor Configuration Which Reduces Copper Loss of Switched Reluctance Motors with Suppression of Torque Ripple and Input Current Ripple

机译:转子配置可通过抑制转矩纹波和输入电流纹波来降低开关磁阻电机的铜损

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Switched reluctance motors (SRMs) are attractive motors for electric vehicle propulsion because of their cost-effectiveness or robust structures. However, SRMs suffer from input current ripple and torque ripple. The authors have proposed derivation method of phase current profile which suppresses input current ripple and torque ripple and experimentally verified the suppression of both ripples. However, the rms value of derived phase current was much greater than square wave current, which is implemented widely, and increased copper loss. For the EV application, the rms value should be reduced. To break through the issue, the author addressed the characteristic that phase current profiles are shaped based on each reluctance profile, which is shaped by motor configuration, and noticed that phase current profile with low rms value may be derived by a novel rotor configuration. Therefore, this paper proposes a novel rotor configuration which can reduce the copper loss. The proposed rotor configuration is designed to satisfy the reluctance profile which is derived by previously proposed derivation method of phase current. This paper also presents the experiment for the evaluation of the reduction of copper loss.
机译:开关磁阻电机(SRM)由于其成本效益或坚固的结构而成为电动汽车推进的诱人电机。但是,SRM受输入电流纹波和转矩纹波的影响。作者提出了一种相位电流分布的推导方法,该方法可以抑制输入电流纹波和转矩纹波,并通过实验验证了两种纹波的抑制。但是,导出的相电流的均方根值比方波电流大得多,而方波电流已被广泛采用,并增加了铜损。对于电动汽车应用,均方根值应减小。为了解决这个问题,作者提出了一种特征,即根据每个磁阻曲线对相电流曲线进行整形,并通过电动机的配置对其进行整形,并注意到具有低均方根值的相电流曲线可以通过一种新颖的转子结构得出。因此,本文提出了一种新型的转子结构,可以减少铜损。所提出的转子构造被设计为满足通过先前提出的相电流推导方法所得出的磁阻曲线。本文还提出了评估铜损减少的实验。

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