Open-Circuit Air-Gap Magnetic Field Calculation of Interior Permanent Magnet Synchronous Motor With V-Shaped Segmented Skewed Poles Using Hybrid Analytical Method

齿槽效应转矩 定子 磁场 气隙(管道) 有限元法 渗透 磁路 反电动势 磁铁 同步电动机 磁阻 物理 扭矩 磁芯 控制理论(社会学) 饱和(图论) 机械 材料科学 电磁线圈 计算机科学 数学 化学 渗透 生物化学 控制(管理) 量子力学 组合数学 人工智能 复合材料 热力学
作者
Yuansheng An,Conggan Ma,Q Zhang,Yue Guo,Michele Degano,Chris Gerada,Qiongyao Li,Shengsen Zhou
出处
期刊:IEEE Transactions on Magnetics [Institute of Electrical and Electronics Engineers]
卷期号:57 (12): 1-9 被引量:14
标识
DOI:10.1109/tmag.2021.3118222
摘要

Due to the local inhomogeneous magnetic saturation of the core of the interior permanent magnet synchronous motor (IPMSM), the magnetic field changes nonlinearly, which makes the analytical calculation of the magnetic field difficult. Therefore, the calculation of the magnetic field mostly relies on the finite element method (FEM). However, the high computation cost of FEM restricts the efficiency of the design and analysis of IPMSM. In this article, an analytical model (AM) of slotless open-circuit air-gap magnetic field (OC-AG-MF) of IPMSM with V-shaped segmented skewed poles is derived by combining the subdomain method (SDM) and the magnetic equivalent circuit (MEC) method, and then, the AM of slotted OC-AG-MF of IPMSM with V-shaped segmented skewed poles is obtained by introducing the complex relative permeance. To show the effectiveness of the novel AM, the OC-AG-MF and cogging torque of an IPMSM with V-shaped segmented skewed poles for electric vehicles are calculated by the AM and FEM, respectively. The spatial order, amplitude–frequency characteristics, and the 3-D spatial distribution of the OC-AG-MF are analyzed. Finally, the accuracy of the AM is experimentally verified by direct measurement of OC-AG-MF and no-load back electromotive force (EMF) of the motor. The AM proposed in this article is shown to accurately calculate the radial and tangential components of OC-AG-MF of IPMSM with V-shaped segmented skewed poles considering rotor magnetic bridge saturation effect and stator slotting effect. Meanwhile, the efficiency of the design and analysis of the motor is expected to be improved due to the reduced computational effort compared to the prevalent FEM.
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