Modeling of Synchronous Reluctance Motors by Analytical and Finite Element Approaches for Electric Vehicle Applications

H. B. Duc, Dung Dang Chi, P. Do, V. D. Quoc
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Abstract

The design and analysis of synchronous reluctance motor (SynRM) with a distributed type winding is an alternative to replace the permanent magnet synchronous motors (PMSM), which is commonly used in electric vehicle applications. The use of a SynRM eliminates the need for permanent magnets (PMs), reducing the dependence on rare earth materials and potentially lowering costs. In this paper, there are two approaches: a new approach of step-skewing rotor (SSR) is proposed to improve eletromagnetic parameters such as minimization of the active volume, maximization of the output power and reduction of the torque ripple of the SynRM. Then, a finite element technique is developed to analyse and simulate the distribution of magnetic flux and map efficiency of the proposed SynRM. Additionally, the paper has also investigated the distribution of temparature and machnical stress in the region of flux barries of the rotor.
基于解析和有限元方法的电动汽车同步磁阻电机建模
分布式绕组同步磁阻电机(SynRM)的设计与分析是替代电动汽车中常用的永磁同步电机(PMSM)的一种替代方案。SynRM的使用消除了对永磁体(pm)的需求,减少了对稀土材料的依赖,并有可能降低成本。本文提出了两种方法:提出了一种新的步进偏斜转子(SSR)方法,以改善步进偏斜转子的电磁参数,如最小化有源体积、最大化输出功率和减小转矩脉动。在此基础上,利用有限元技术对该系统的磁通分布和映射效率进行了分析和仿真。此外,本文还研究了转子磁阻区温度和机械应力的分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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