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

机译:新型双定子通量切换永磁机的设计与优化

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In this paper, a 24-slot/25-pol e dual-stator flux switching permanent magnet machine (DSFSPMM) is designed and optimized to improve electromagnetic performance by combining the spoke-type magnet configurations, phase-group concentrated coil windings and an unaligned arrangement of rotor teeth. The design concept and operation principle of the machine are introduced in detail. Due to the complex dualstator structure, the proposed DSFSPMM model is established and analyzed by using the finite element method software. To achieve the optimal structure size of the machine, the multiobjective genetic algorithm (MOGA) is carried out based on the single-parameter scanning. As a result, it shows that the optimized model exhibits high torque density, low torque ripple, and high efficiency.
机译:在本文中,设计并优化了一个24插槽/ 25-POL E双定子通量开关永磁机(DSFSPMM),以通过组合辐条型磁体配置,相位组浓缩线圈绕组和未对准的方式来改善电磁性能,以改善电磁性能。转子齿的布置。详细介绍了机器的设计概念和操作原理。由于复杂的Dualstator结构,通过使用有限元方法软件建立和分析所提出的DSFSPMM模型。为了实现机器的最佳结构尺寸,基于单参数扫描执行多目标遗传算法(MOGA)。结果,它表明优化的模型表现出高扭矩密度,低扭矩脉动和高效率。

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