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Design and Optimization of a Novel Dual-Rotors Flux-Switching Permanent-Magnet Machine

机译:新型双转子磁通开关永磁机的设计与优化

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摘要

In this paper, a novel dual-rotors flux switching permanent magnet machine (DRFSPMM) is designed and optimized for low speed and high torque applications to improve torque ripple, torque and efficiency. The design concept and the operating principle are illustrated firstly. The structural parameters of the initial machine are optimized by finite element method (FEM), taking the torque, PM utilization, power factor (p.f.) into comprehensive consideration. The dominant parameter ranges are determined by single parameter scanning, and the optimal candidate is obtained by response surface method (RSM) optimization incorporating Latin hypercube sampling. The prediction results of the optimal candidate fit well with these of FEM with only slight discrepancy. The results indicate that the torque ripple is reduced from 6.32% to 3.77% while the output torque increases from 57.12 Nm to 63.18 Nm.
机译:本文设计了一种新型双转子通量开关永磁机(DRFSPMM),为低速和高扭矩应用而设计和优化,以提高扭矩纹波,扭矩和效率。首先说明设计概念和操作原理。初始机器的结构参数通过有限元方法(FEM)进行优化,以扭矩,PM利用,功率因数(P.F.)综合考虑。主导参数范围由单个参数扫描确定,并且通过响应曲面方法(RSM)优化而获得Latin HyperCube采样的最佳候选。最佳候选的预测结果适合于这些FEM,仅具有轻微的差异。结果表明,扭矩脉动从6.32%降低至3.77%,而输出扭矩从57.12nm增加到63.18nm。

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