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Quantitative Design of a High Performance Permanent Magnet Vernier Generator

机译:高性能永磁游标发生器的定量设计

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Permanent-magnet vernier machines are becoming more and more attractive due to their high torque density and low-speed operating capabilities. This paper investigates the effects of the magnet thickness, magnet pole arc ratio, and slot open ratio on the torque capacity. An analytical model is first presented. It is validated by comparing the results with the finite-element analysis (FEA) under the same hypothesis. A mono-objective optimization is then conducted on the basis of the analytical model coupled to genetic algorithm to reach the optimal values yielding the highest value of the torque. Finally, the influence of nonlinear magnetic material behavior on the optimal design is investigated through nonlinear FEA. The results are presented and discussed.
机译:永磁游标机由于其高扭矩密度和低速运行能力而变得越来越有吸引力。本文研究了磁体厚度,磁极电弧比和开槽比对转矩容量的影响。首先介绍一个分析模型。通过在相同假设下将结果与有限元分析(FEA)进行比较来验证这一点。然后,在与遗传算法耦合的分析模型的基础上进行单目标优化,以达到产生最大扭矩值的最佳值。最后,通过非线性有限元分析研究了非线性磁性材料行为对最优设计的影响。结果进行了介绍和讨论。

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