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Airgap-Harmonic-Based Multilevel Design and Optimization of a Double-Stator Flux-Modulated Permanent-Magnet Motor

机译:气胶 - 谐波的多级设计与双定子磁通调制永磁电动机的优化

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摘要

In this article, based on flux modulation theory, an airgap-harmonic-based multilevel optimization design approach is proposed for a double-stator flux-modulated permanent-magnet (DS-FMPM) motor. The proposed DS-FMPM motor is purposefully designed, so as to realize the design requirements of driving cycle. In the proposed optimization approach, based on three fundamental elements of general flux modulation theory, motor optimization design is carried out from three levels. Furthermore, a response surface method, sensitivity analysis, and a genetic algorithm are purposely employed in different levels to obtain optimal motor design. In addition, electromagnetic performances of a DS-FMPM motor are demonstrated in detail. Finally, a prototype motor is manufactured and tested. Both simulation and experimental results verify the feasibility of the DS-FMPM motor and the effectiveness of the proposed airgap-harmonic-based multilevel optimization design approach.
机译:在本文中,基于磁通调制理论,提出了一种用于双定子通量调制的永磁体(DS-FMPM)电动机的气隙 - 谐波的多级优化设计方法。 所提出的DS-FMPM电机是有目的地设计的,以实现驾驶循环的设计要求。 在所提出的优化方法中,基于一般磁通调制理论的三个基本要素,电机优化设计从三个级别进行。 此外,响应表面方法,灵敏度分析和遗传算法在不同的水平中用途采用,以获得最佳电动机设计。 此外,详细说明了DS-FMPM电动机的电磁性能。 最后,制造和测试原型电动机。 仿真和实验结果均验证了DS-FMPM电机的可行性以及所提出的气胶 - 谐波的多级优化设计方法的有效性。

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