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Analysis of partitioned stator flux-switching permanent magnet machine by magnetic equivalent circuit

机译:分区定子磁通转换永磁电机的等效磁路分析

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摘要

This paper presents a novel technique for modeling Partitioned Stator Flux-Switching Permanent Magnet (PS-FSPM) machine by Magnetic Equivalent Circuit (MEC) method which provides adjustable accuracy for the modeling of the machine. The machine geometry is divided into 13 zones, where the number of flux tubes in the core and air parts can be selected. Considering multiple flux tubes in the teeth and slots regions, the flux distribution can be accurately obtained. The saturation effect of the core elements are also taken into account by nonlinear reluctances. A novel method for saturation effect is proposed, where the B-H curve can be tuned by selectable parameters. The proposed model is capable of modeling PS-FSPMs with various poles-teeth combination. Finally, the results of the proposed method are compared with finite element method (FEM) in terms of accuracy and processing time.
机译:本文提出了一种通过磁等效电路(MEC)对分区定子磁通开关永磁(PS-FSPM)电机进行建模的新技术,该技术为电机建模提供了可调节的精度。机器的几何形状分为13个区域,可以选择芯子和空气部分中的磁通管数量。考虑在齿和槽区域中的多个通量管,可以精确地获得通量分布。非线性磁阻也考虑了核心元素的饱和效应。提出了一种饱和效应的新方法,其中B-H曲线可以通过可选参数进行调整。所提出的模型能够对具有各种极齿组合的PS-FSPM进行建模。最后,将所提方法的结果与有限元方法(FEM)在准确性和处理时间方面进行了比较。

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