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Five-phase external rotor permanent magnet assisted synchronous reluctance motor for in-wheel applications

机译:轮内应用的五相外转子永磁辅助同步磁阻电机

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摘要

This paper presents a five-phase external rotor permanent magnet assisted synchronous reluctance motor (PMa-SynRM) with low torque ripple and cogging torque for in-wheel applications. Multi-phase internal rotor electric motors have been proposed for vehicular applications as they possess low torque ripple and low back-EMF harmonics. However, increase in the power density while maintaining the same size and amount of PMs has been a challenging issue. In comparison to the internal rotor motors, external rotor motors can be optimally designed to produce higher torque density with low torque ripple. In this study, the design technique to develop an optimal five-phase external rotor PMa-SynRM model is discussed in detail. Detailed finite element simulations are conducted on the optimally designed 3.8kW five-phase external rotor PMa-SynRM and the results are compared with five-phase internal rotor PMa-SynRM. With the same size, volume, and lower PM composition, the 3.8kW five-phase external rotor PMa-SynRM is capable of generating higher torque density with lower torque pulsation and almost negligible cogging torque in comparison to the 3kW five-phase internal rotor PMa-SynRM. Experimental results are compared between five-phase internal and external rotor PMa-SynRMs to validate the simulation results.
机译:本文提出了一种适用于轮毂应用的五相外转子永磁辅助同步磁阻电动机(PMa-SynRM),具有低转矩波动和齿槽转矩。已经提出了用于车辆应用的多相内转子电动机,因为它们具有低转矩脉动和低反电动势谐波。但是,在保持相同大小和数量的PM的同时提高功率密度一直是一个具有挑战性的问题。与内部转子电动机相比,可以将外部转子电动机进行最佳设计,以产生较高的转矩密度且转矩波动较小。在这项研究中,详细讨论了开发最佳五相外转子PMa-SynRM模型的设计技术。在优化设计的3.8kW五相外转子PMa-SynRM上进行了详细的有限元模拟,并将结果与​​五相内转子PMa-SynRM进行了比较。与3kW五相内转子PMa相比,具有相同的尺寸,体积和更低的PM成分,3.8kW的五相外转子PMa-SynRM能够以更低的转矩脉动和几乎可忽略的齿槽转矩产生更高的转矩密度。 -SynRM。比较了五相内外转子PMa-SynRM的实验结果,以验证仿真结果。

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