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首页> 外文期刊>Magnetics, IEEE Transactions on >Subdomain Model for Predicting Magnetic Field in Slotted Surface Mounted Permanent-Magnet Machines With Rotor Eccentricity
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Subdomain Model for Predicting Magnetic Field in Slotted Surface Mounted Permanent-Magnet Machines With Rotor Eccentricity

机译:预测转子偏心开槽表面安装永磁电机中磁场的子域模型

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摘要

An analytical subdomain model for the prediction of open-circuit magnetic field in slotted surface-mounted permanent-magnet machines is developed in this paper, which considers the effect of rotor eccentricity. The magnetic field domain is divided into three types of simple and regular subdomains, viz. magnet, air gap, and stator slots. The analytical solution is derived by solving the field governing equations in each subdomain and applying the boundary conditions to the interfaces between these subdomains. The perturbation method is used to describe the effect of rotor eccentricity. The model accurately accounts for the effect of stator slots, the mutual influence between slots, and rotor eccentricity. The analytical model is validated by the corresponding finite-element results. The results show that the proposed subdomain model up to the first-order perturbation can accurately predict the open-circuit magnetic field in slotted surface-mounted permanent-magnet machines with rotor eccentricity.
机译:本文考虑了转子偏心率的影响,建立了一种用于预测开槽表面安装式永磁电机开路磁场的解析子域模型。磁场域分为简单子域和规则子域三种类型。磁铁,气隙和定子槽。通过求解每个子域中的场控制方程并将边界条件应用于这些子域之间的界面,可以得出解析解。摄动法用来描述转子偏心率的影响。该模型准确地说明了定子槽的影响,槽之间的相互影响以及转子偏心率。该分析模型由相应的有限元结果验证。结果表明,所提出的高达一阶扰动的子域模型可以准确地预测开槽表面安装式永磁转子永磁电机的开路磁场。

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