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

机译:关于管状直线永磁同步电机的定子磁路设计:三种拓扑结构的比较

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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.
机译:本文旨在设计表格线性永磁同步电机(T-LPMSM),重点是定子磁路。研究了三种拓扑结构:(i)初始概念,其中定子磁极节距等于动子极;(ii)模块化概念,其中定子由磁通势垒分隔的磁性单元组成;和(iii )以每个极和每个相位的分数槽为特征的概念。建立一个磁等效电路(MEC),以选择第二种拓扑结构的合适几何参数,从而最大程度地减小端效应。在先前的工作中已经处理了第一和第三种拓扑。有限元分析了相通量链和反电动势。已经发现,第二拓扑呈现出几乎平衡的反电动势。同时,它们在第三拓扑中的谐波含量最低。

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