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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Comparisons of Rare-Earth and Rare-Earth-Free External Rotor Permanent Magnet Assisted Synchronous Reluctance Motors
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Comparisons of Rare-Earth and Rare-Earth-Free External Rotor Permanent Magnet Assisted Synchronous Reluctance Motors

机译:稀土和无稀土外转子永磁同步磁阻电动机的比较

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摘要

This paper presents the comparisons of five-phase external rotor permanent magnet assisted synchronous reluctance motors (PMa-SynRMs) with neodymium (Nd) and ferrite (Fe) based PMs. Five-phase PMa-SynRMs, in general, have been proposed as an alternative to conventional three-phase motors utilized in automobile applications. However, with increased attention towards higher torque density and lower torque pulsations in electric motor designs, five-phase external rotor PMa-SynRMs can be highly attractive. In addition to increased fault tolerance and reliability of five-phase PMa-SynRMs, an adaptation of external rotor design can significantly increase the average torque developed with reduced torque pulsations and back-electromotive force (EMF) harmonics. However, with the design complexity involved in such high performance five-phase PMa-SynRM designs, the shape of flux barrier and choice of PMs have been one of the main challenges. In this study, novel five-phase external rotor PMa-SynRM designs with optimal flux barrier number and shape with Nd and Fe PMs are presented. Finite element simulations are conducted on the 2-D designs to compare their performance characteristics such as torque developed, torque pulsations, structural stability, thermal heat flow, demagnetization effects, and back-EMF harmonics. Optimal 3.8 kW Nd-based and 3.7 kW Fe-based five-phase external rotor PMa-SynRM designs are fabricated, and experimental tests are conducted on the prototypes to compare the results with a benchmark internal rotor PMa-SynRM.
机译:本文介绍了基于钕(Nd)和铁氧体(Fe)的五相外转子永磁辅助同步磁阻电动机(PMa-SynRMs)的比较。通常,已经提出了五相PMa-SynRM作为汽车应用中常规三相电动机的替代方案。但是,随着越来越多地关注电动机设计中的更高转矩密度和更低转矩脉动,五相外转子PMa-SynRM可能会非常有吸引力。除了提高五相PMa-SynRM的容错性和可靠性外,对外部转子设计的调整还可以显着增加平均转矩,从而减少转矩脉动和反电动势(EMF)谐波。但是,由于这种高性能的五相PMa-SynRM设计涉及复杂的设计,因此磁通势垒的形状和PM的选择一直是主要挑战之一。在这项研究中,提出了新颖的五相外转子PMa-SynRM设计,该设计具有最佳的磁通势垒数量和形状以及Nd和Fe PMs。在二维设计上进行了有限元模拟,以比较其性能特征,例如产生的扭矩,扭矩脉动,结构稳定性,热流,退磁效应和反电动势谐波。制作了最佳的3.8 kW Nd基和3.7 kW Fe基五相外转子PMa-SynRM设计,并对原型进行了实验测试,以将结果与基准内转子PMa-SynRM进行比较。

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