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首页> 外文期刊>Industry Applications, IEEE Transactions on >Cylindrical Rotor Design for Acoustic Noise and Windage Loss Reduction in Switched Reluctance Motor for HEV Applications
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Cylindrical Rotor Design for Acoustic Noise and Windage Loss Reduction in Switched Reluctance Motor for HEV Applications

机译:混合动力车用开关磁阻电机的圆柱转子设计,可降低噪声和风阻

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摘要

A switched reluctance motor (SRM) is one of the candidates of rare-earth-free motors for hybrid electric vehicles (HEVs). An SRM has been developed with same interior permanent magnet synchronous motor (IPMSM) dimensions having competitive maximum torque, operating area, and maximum efficiency. However, this SRM has a windage loss of 1.3 kW due to the salient poles of the SRM driven at the maximum rotational speed. In addition, considerable acoustic noise is caused by the salient poles. In this paper, a simple design of a cylindrical outer shape rotor is proposed, and a comparison with the conventional SRM rotor is carried out. It is found that the efficiency is improved due to the windage loss reduction. It is also found that the acoustic noise is significantly reduced in the proposed rotor design.
机译:开关磁阻电机(SRM)是混合动力汽车(HEV)的无稀土电机的候选之一。已开发出具有相同内部永磁同步电动机(IPMSM)尺寸的SRM,具有具有竞争力的最大扭矩,最大工作面积和最大效率。但是,由于以最大转速驱动的SRM的凸极,该SRM的风阻损失为1.3 kW。另外,凸极会引起相当大的声音噪声。在本文中,提出了一种圆柱形外转子的简单设计,并与传统的SRM转子进行了比较。发现由于减少风阻损失而提高了效率。还发现,在提出的转子设计中,声学噪声被大大降低。

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