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Optimisation method to maximise torque density of high-speed slotless permanent magnet synchronous machine in aerospace applications

机译:最大化航空航天应用中的高速无槽永磁同步电机转矩密度的优化方法

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摘要

This study presents an optimisation method for slotless permanent magnet synchronous machines to maximise torque density. The slotless structure with outer rotor and Halbach array has been selected to limit iron losses, torque ripple, cogging torque, and high-order harmonics. High-speed operation compounds both ac copper loss and mechanical stress. The former causes a temperature rise in the machine, while the latter is induced by strong centrifugal forces. A finite-element analysis-based optimisation method that utilises a parallel multistart, mesh adaptive direct search strategy is proposed to consider ac copper loss and mechanical stress as constraint variables. Finally, the torque densities of titanium and aermet shell designs were compared to show how material selection provides a trade-off in terms of torque production, mechanical stress, and weight.
机译:这项研究提出了一种无槽永磁同步电机的优化方法,以使转矩密度最大化。选择具有外转子和Halbach阵列的无槽结构来限制铁损,转矩脉动,齿槽转矩和高次谐波。高速运行会增加交流铜损耗和机械应力。前者导致机器温度升高,而后者则由强大的离心力引起。提出了一种基于有限元分析的优化方法,该方法利用并行多起点,网格自适应直接搜索策略将交流铜损和机械应力视为约束变量。最后,比较了钛和金属外壳设计的扭矩密度,以显示材料选择如何在扭矩产生,机械应力和重量方面进行权衡。

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