磁阻
磁铁
磁场
渗透
磁路
齿槽效应转矩
饱和(图论)
磁通量
永磁同步发电机
磁芯
有限元法
机械
物理
数学分析
数学
工程类
电气工程
电磁线圈
结构工程
化学
组合数学
量子力学
生物化学
渗透
膜
作者
Chang Liu,Shuguang Zuo,Xiaorui Hu,Siyue Chen,Zhipeng Wu
出处
期刊:SAE International Journal of Advances and Current Practices in Mobility
日期:2022-03-29
卷期号:4 (6): 2446-2455
摘要
<div class="section abstract"><div class="htmlview paragraph">Calculating accurately iron bridge saturation effects of the magnetic field, for Permanent Magnet Assisted Synchronous Reluctance Motors (PMASynRMs), remains to be a knotty problem. This paper presents an analytical modeling method to predict open-circuit magnetic field distributions and electromagnetic performances of PMASynRMs, considering iron bridge saturation effects. This analytical modeling method combines the magnetic equivalent circuit method, superposition principle, the solution of the governing Maxwell’s field equations and a complex relative permeance function. A quadruple-layer PMASynRM are remodeled into four surface-inserted permanent magnet synchronous motors (SPMSMs) which have different surface-inserted permanent magnets. Each layer of the interior permanent magnets of the PMASynRM is transformed into a new equivalent surface-inserted permanent magnet whose equivalent thickness needs to be defined by the magnetic equivalent circuit method due to iron bridge saturation effects. Based on superposition principle and the solution of the Laplace’s or Poisson’s field equation, the distribution characteristics of the radial and tangential magnetic flux density are obtained for PMASynRMs. The slotting effect is considered by a complex relative permeance function. To confirm the accuracy of the proposed analytical modeling method, the analytical solutions of magnetic flux density and cogging torque have been compared with Finite Element Method (FEM) simulation results. The root mean square errors of radial and tangential magnetic flux density between analytical and FEM results are 0.000553 and 0.0000916 respectively. The results indicate that the proposed analytical modeling method can consider iron bridge saturation effects effectively, which is suitable for performance predictions and parametric studies of PMASynRMs.</div></div>
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