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首页> 外文期刊>IEEE Transactions on Magnetics >The Optimization of Pole Arc Coefficient to Reduce Cogging Torque in Surface-Mounted Permanent Magnet Motors
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The Optimization of Pole Arc Coefficient to Reduce Cogging Torque in Surface-Mounted Permanent Magnet Motors

机译:降低表面贴装式永磁电动机齿槽转矩的极弧系数优化

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In this paper, the optimization method of improved domain elimination algorithm (DEA), finite-element method (FEM), and analytical method are combined to optimize the pole arc coefficient of a permanent magnet (PM) to minimize the cogging torque of a permanent magnet motor. Since the cogging torque is very sensitive to the changing of the pole arc coefficient of a PM, the changing of the pole arc coefficient should be very small in optimization. The cogging torque corresponding to many relative positions between magnet and armature must be calculated by FEM to find the peak value for every pole arc coefficient, so in order to reduce the computing time, the feasible region of the pole arc coefficient should be set to as small as possible. In this paper, the analytical method is first used to reduce the feasible region of pole arc coefficient in which the cogging torque is small. Then, improved DEA and FEM are used to find the best pole arc coefficient. After optimization, the cogging torque is greatly reduced, and the computing time decreases notably.
机译:本文结合改进的域消除算法(DEA),有限元方法(FEM)和解析方法的优化方法来优化永磁体(PM)的极弧系数,以使永磁体的齿槽转矩最小化电磁马达。由于齿槽转矩对PM的极电弧系数的变化非常敏感,因此在优化中极电弧系数的变化应该很小。必须通过FEM计算与磁体和电枢之间的许多相对位置相对应的齿槽转矩,以找到每个极弧系数的峰值,因此,为了减少计算时间,应将极弧系数的可行区域设置为尽可能小。本文首先采用解析法来减小齿槽转矩较小的极弧系数的可行范围。然后,使用改进的DEA和FEM来找到最佳的极弧系数。优化后,齿槽转矩大大降低,计算时间显着减少。

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