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Analysis and Optimization of a Novel 2-D Magnet Array with Gaps and Staggers for a Moving-Magnet Planar Motor

机译:一种新颖的带有间隙和交错的二维磁体阵列用于动磁平面电动机的分析和优化

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摘要

This paper presents a novel 2-D magnet array with gaps and staggers, which is especially suitable for magnetically levitated planar motor with moving magnets. The magnetic flux density distribution is derived by Fourier analysis and superposition. The influences of gaps and staggers on high-order harmonics and flux density were analyzed, and the optimized design is presented. Compared with the other improved structures based on traditional Halbach magnet arrays, the proposed design has the lowest high-order harmonics percentage, and the characteristics of flux density meet the demand of high acceleration in horizontal directions. It is also lightweight and easy to manufacture. The proposed magnet array was built, and the calculation results have been verified with experiment.
机译:本文提出了一种具有间隙和交错的新型二维磁体阵列,特别适用于带有移动磁体的磁悬浮平面电动机。通过傅立叶分析和叠加得出磁通密度分布。分析了间隙和交错对高次谐波和磁通密度的影响,并提出了优化设计。与基于传统的Halbach磁体阵列的其他改进结构相比,该设计具有最低的高次谐波百分比,并且磁通密度的特性满足了水平方向上高加速度的需求。它也是轻量级的并且易于制造。建立了提出的磁体阵列,并通过实验验证了计算结果。

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