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Optimal Design of Wound Field Synchronous Reluctance Machines to Improve Torque by Increasing the Saliency Ratio

机译:绕组磁场同步磁阻电机的优化设计,通过提高凸度比来改善扭矩

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摘要

This paper proposes an optimal design for a salient pole wound field synchronous machine (WFSM) with a single flux barrier to improve torque performance and obtain a wide operating range, simultaneously. The proposed WFSM motor can effectively decrease q-axis inductance to improve the saliency ratio (Xd/Xq) and increase the reluctance torque. To maximize the saliency ratio and improve the torque characteristics, the single flux barrier is optimized, considering the magnetic saturation that uses Kriging method based on Latin hypercube sampling and a genetic algorithm. The 2-D finite element analysis results by the aid of JMAG-Designer shows that the saliency ratio Xd/Xq, the reluctance torque, and the total torque of the optimal model are increased by 9.27%, 20.45%, and 6.17%, respectively, compared with those of the basic model. Finally, the performance of the optimal motor is verified through an experimental test, which indicates good agreement with the simulation results.
机译:本文提出了一种针对单磁通势垒的凸极绕线励磁同步电机(WFSM)的优化设计,以提高转矩性能并同时获得较宽的工作范围。所提出的WFSM电动机可以有效地减小q轴电感,以提高显着比(X d / X q )并增加磁阻转矩。为了最大程度地提高显着性比并改善扭矩特性,考虑了使用基于拉丁超立方体采样的克里格方法和遗传算法的磁饱和度,对单个磁通屏障进行了优化。借助JMAG-Designer进行的二维有限元分析结果表明,凸度比X d / X q ,磁阻转矩和总转矩最佳模型分别比基本模型增加了9.27%,20.45%和6.17%。最后,通过实验测试验证了最佳电动机的性能,这表明与仿真结果吻合良好。

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