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Optimization of ring magnet geometry for field harmonic control in electric motors

机译:环形磁铁几何形状的优化,用于电动机的场谐波控制

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摘要

An optimization algorithm for shaping a multipole, continuous magnet for elimination of one or more harmonics is presented. The magnet is modeled as a continuous ring portion and an optimized section, modeled as a series of thin layers, at each pole. The analytical model investigated consisted of a radially magnetized four-pole motor with a solid ring stator. The algorithm successfully shaped the poles to eliminate selectively the 8th, the 12th, or the 16th harmonic, at the expense of increasing the amplitudes of the other harmonics. The solutions were not unique. A tradeoff in effectiveness existed between the minimum thickness of the continuous ring and the minimum sector angle of the outer pole layer. For thin rings and small outer layer sector angles, an optimum pole shape was readily found. However, if one parameter was too large, then the other had to be decreased for an effective solution to exist.
机译:提出了一种成形多极连续磁体以消除一个或多个谐波的优化算法。磁体被建模为连续的环形部分,并且在每个磁极处建模为一系列薄层的优化截面。研究的分析模型由带有实心环形定子的径向磁化四极电机组成。该算法成功地对磁极进行了整形,从而有选择地消除了8次,12次或16次谐波,但代价是增加了其他谐波的幅度。解决方案不是唯一的。在连续环的最小厚度和外磁极层的最小扇形角之间存在有效性的折衷。对于薄环和小的外层扇形角,很容易找到最佳的磁极形状。但是,如果一个参数太大,则必须减小另一个参数才能存在有效的解决方案。

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