On the stator magnetic circuit design of tubular-linear PM synchronous machines: A comparison between three topologies

Amal Souissi, I. Abdennadher, A. Masmoudi
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引用次数: 2

Abstract

This paper is aimed at the design of tabular-linear PM synchronous machines (T-LPMSMs) with emphasis on the stator magnetic circuit. Three topologies are investigated, such that: (i) an initial concept where the stator pole pitch is equal to the mover one, (ii) a modular concept where the stator is made up of magnetic units separated by a flux barrier, and (iii) a concept characterized by fractional slot per pole and per phase. A magnetic equivalent circuit (MEC) is build in order to select suitable geometrical parameters of the second topology that minimize the end effect; the ones of the first and third topologies have been treated in a previous work. The phase flux linkages and back-EMFs are investigated by FEA. It has been found that the second topology exhibits almost balanced back-EMFs. While, these have the lowest harmonic content in the third topology.
管状直线永磁同步电机定子磁路设计:三种拓扑结构的比较
本文以定子磁路设计为重点,研究了表线性永磁同步电机的设计。研究了三种拓扑结构,例如:(i)定子极节距等于动子节距的初始概念,(ii)定子由磁屏障隔开的磁单元组成的模块化概念,以及(iii)以每极和每相分数槽为特征的概念。构建磁等效电路(MEC),为第二拓扑结构选择合适的几何参数,使末端效应最小化;第一种和第三种拓扑已经在以前的工作中讨论过了。采用有限元分析方法研究了相磁链和反向电磁场。研究发现,第二种拓扑结构具有几乎平衡的后向电磁场。而在第三种拓扑中,它们的谐波含量最低。
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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