Mutual-inductance modelling in line-start permanent-magnet synchronous machines based on winding-function theory

B. Wymeersch, F. De Belie, C. Rasmussen, F. Jensen, L. Vandevelde
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引用次数: 5

Abstract

In this paper an analytic method to study space-harmonic effects and to map the influences of geometric design parameters on the line-start permanent-magnet synchronous machine (LSPMSM) dynamic performance (start-up and other transients) is presented, based on Winding Function Theory (WFT). The mutual inductances between a rotor, containing barriers and iron bridges near the magnets, and a stator with concentric windings are computed. As the iron bridges near the magnets are in saturation due to the high magnetic field of the magnets, the assumption is made to represent the rotor in different parts. Each part has a high permeability, and is separated by a layer of low permeable material, i.e. the magnets, the saturated bridges and the barriers. The magnetic coupling is described, and the different computation methods to obtain mutual inductance values are given. Using finite element methods (FEM) the WFT-resulting inductances are verified.
基于绕组函数理论的线路起动永磁同步电机互感建模
本文提出了一种基于绕组函数理论(WFT)的空间谐波效应分析方法和几何设计参数对线路启动永磁同步电机(LSPMSM)动态性能(启动和其他暂态)的影响映射。计算了在磁体附近含有屏障和铁桥的转子与具有同心绕组的定子之间的互感。由于磁铁的高磁场使磁铁附近的铁桥处于饱和状态,因此假设转子在不同部位。每个部分都具有高磁导率,并由一层低磁导率材料隔开,即磁铁,饱和桥和屏障。描述了磁耦合,并给出了获取互感值的不同计算方法。利用有限元方法对wft产生的电感进行了验证。
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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