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Analysis and Design of Interior Permanent Magnet Synchronous Motor Using a Sequential-Stage Magnetic Equivalent Circuit

机译:序贯磁当量电路的内部永磁同步电动机的分析与设计

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摘要

In the interior permanent magnet synchronous motor (IPMSM) design for the traction motor of fuel cell electric vehicles (FCEVs), it is necessary to analyze the nonlinear characteristics including saturation due to the requirement of a high torque density. The finite element method (FEM) is the most widely used technique for electric machine designs because complicated computations can be taken into account. However, a large amount of analysis over the entire design is a computationally large burden. To address this problem, this paper proposes a fast and accurate analysis method, sequential-stage magnetic equivalent circuit (SSMEC). The proposed method consists of no-load, q-axis circuit analysis, d-axis circuit analysis, and motor characteristic calculation. Because the proposed method can quickly and accurately analyze the complex shapes of an IPMSM, it can be used effectively throughout the entire motor design process. The effectiveness of the proposed SSMEC was verified in comparing with experimental results.
机译:在用于燃料电池电动汽车(FCEV)的牵引电动机的内部永磁同步电动机(IPMSM)设计中,由于需要高转矩密度,因此有必要分析包括饱和在内的非线性特性。有限元方法(FEM)是电机设计中使用最广泛的技术,因为可以考虑复杂的计算。但是,在整个设计中进行大量分析会带来很大的计算负担。为了解决这个问题,本文提出了一种快速,准确的分析方法,即顺序级磁等效电路(SSMEC)。所提出的方法包括空载,q轴电路分析,d轴电路分析和电动机特性计算。由于所提出的方法可以快速而准确地分析IPMSM的复杂形状,因此可以在整个电机设计过程中有效地使用它。与实验结果比较,验证了所提出的SSMEC的有效性。

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