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首页> 外文期刊>Mathematical and Computational Applications >An Analytical Expression for Magnet Shape Optimization in Surface-Mounted Permanent Magnet Machines
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An Analytical Expression for Magnet Shape Optimization in Surface-Mounted Permanent Magnet Machines

机译:表面贴装式永磁电机中磁体形状优化的解析表达式

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Surface-mounted permanent magnet machines are widely used in low and medium speed applications. Pulsating torque components is the most crucial challenge, especially in low-speed applications. Magnet pole shape optimization can be used to mitigate these components. In this research, an analytical model is proposed to calculate the magnetic vector potential in surface-mounted permanent magnet machines. A mathematical expression is also derived for optimal the magnet shape to reduce the cogging torque and electromagnetic torque components. The presented model is based on the resolution of the Laplace’s and Poisson’s equations in polar coordinates by using the subdomain method and applying hyperbolic functions. The proposed method is applied to the performance computation of a surface-mounted permanent magnet machine, i.e., a 3-phase 12S-10P motor. The analytical results are validated through the finite element analysis (FEA) method.
机译:表面安装的永磁电机广泛用​​于低速和中速应用。脉动扭矩分量是最关键的挑战,尤其是在低速应用中。磁极形状优化可用于减轻这些分量。在这项研究中,提出了一种分析模型来计算表面安装式永磁电机的磁矢量势。还导出了数学表达式以优化磁体形状,以减小齿槽转矩和电磁转矩分量。通过使用子域方法并应用双曲函数,提出的模型基于极坐标中的Laplace和Poisson方程的分辨率。所提出的方法被应用于表面安装的永磁电机,即三相12S-10P电动机的性能计算。通过有限元分析(FEA)方法验证了分析结果。

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