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Design and Optimization of Arc Permanent Magnet Synchronous Motor Used on Large Telescope

机译:大型望远镜用电弧永磁同步电动机的设计与优化

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摘要

In this paper, we propose to analyze the cogging force of an arc permanent-magnet synchronous motor (Arc PMSM), which will be applied on the next generation large telescope. Finite element analysis (FEA) is carried out to analyze the cogging force of Arc PMSM by using planar cross sections. By adopting optimization methods, such as adjusting the length of stator and adopting fractional slot, the end cogging force decreased from 6.2 N·m to 2 N·m, and the slot cogging force decreased from 6.0 N·m to 0.67 N·m accordingly. A geometric optimization in regards to the relative positions of stators along the rotor is also contrived to reduce the end cogging force. Both simulation and experimental results show that the total toque ripple can be as little as 2%, which can satisfy the tracking accuracy of the telescope.
机译:在本文中,我们建议分析电弧永磁同步电动机(Arc PMSM)的齿槽力,该电动机将应用于下一代大型望远镜。进行了有限元分析(FEA),以使用平面横截面分析Arc PMSM的齿槽力。通过采用调整定子长度,采用分槽等优化方法,端齿槽效应由6.2 N·m减小至2 N·m,槽齿效应由6.0 N·m减小至0.67 N·m。 。关于定子沿着转子的相对位置的几何优化也被设计为减小末端齿槽力。仿真和实验结果均表明,总转矩脉动可以低至2%,可以满足望远镜的跟踪精度。

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