Power Density Optimization Through Optimal Selection of PM properties in a PM-SyncRM Using FEM Analysis

H. Ghorbani, B. Majidi
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引用次数: 2

Abstract

Recent developments in electrical machine industries have made investigators to explore new topologies of electrical machines including Synchronous Reluctance Machine (SyncRM). However, Permanent Magnet Assisted Synchronous Reluctance Machine (PMSyncRM or PMASyncRM) which is originated from SyncRM and PMs are inserted in flux barriers of rotor is also introduced for improving the magnetic performance of SyncRM. Thus, the amount, magnetic direction and material of PM segments should be optimized based on the operational requirement. In order to enhance power density of the machine, 2D Finite Element Method (FEM) is applied to six PM layouts considering three different types of PM materials in two magnetic directions and results are presented in this paper. Based on the results PM-SyncRM with two NdFeB PMs per pole aligned with flux direction in rotor shows the overall enhancement in power (torque) density and torque ripple reduction.
基于有限元分析的PM- syncrm中PM特性优选的功率密度优化
近年来电机工业的发展促使研究人员探索新的电机拓扑结构,包括同步磁阻电机(SyncRM)。而在同步磁阻电机的基础上,又引入了永磁辅助同步磁阻电机(PMSyncRM或PMASyncRM),将永磁辅助同步磁阻电机插入转子磁障中,以提高同步磁阻电机的磁性能。因此,应根据操作要求对PM段的数量、磁向和材料进行优化。为了提高机床的功率密度,采用二维有限元法对两磁方向上三种不同永磁材料的六种永磁布局进行了分析,并给出了结果。结果表明,每极2个钕铁硼永磁与转子磁链方向对齐后,电机功率(转矩)密度整体提高,转矩脉动减小。
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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