Design and Study of Radial Flux Dual-Rotor Permanent Magnet Synchronous Machine With Modular Stator

Minglei Yang;Yeqin Wang;Xiusen Wang;Zaimin Zhong
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Abstract

In this article, a design method of equal inner and outer flux applicable to radial flux dual-rotor permanent magnet synchronous machine (RFDR-PMSM) with a modular stator is proposed. Based on this design method, the power equation of the RFDR-PMSM with the modular stator is derived, which reveals the theoretical relationship between the main sizes and the power. In order to simplify the winding process of the modular stator, a fractional-slot concentrated winding is selected for RFDR-PMSM with the modular stator. Then, a 24-slots and 20-poles RFDR-PMSM with a modular stator is designed using the proposed design methodology. Through finite element analysis (FEA), it is found that the design RFDR-PMSM with the modular stator has higher power density and efficiency compared with the traditional RFDR-PMSM with a stator yoke. Moreover, a modular stator structure with a pin connection is proposed to solve the problem that the stator loses effective support after removing the stator yoke. Finally, a prototype of the RFDR-PMSM with the modular stator is manufactured. The back electromotive force (EMF), current-torque curve, and the efficiency map up to 10 kW of the RFDR-PMSM with the modular stator are tested, and the correctness of the finite element model and theoretical design is verified by comparing the experimental results with the FEA results.
带模块化定子的径向磁通双转子永磁同步机的设计与研究
本文提出了一种适用于带模块化定子的径向磁通双转子永磁同步机(RFDR-PMSM)的内外磁通相等的设计方法。基于该设计方法,推导出了模块化定子 RFDR-PMSM 的功率方程,揭示了主尺寸与功率之间的理论关系。为了简化模块化定子的绕组工艺,选择了一种分数槽集中绕组用于模块化定子 RFDR-PMSM。然后,利用所提出的设计方法,设计出了带有模块化定子的 24 槽 20 极 RFDR-PMSM。通过有限元分析(FEA)发现,与传统的带定子轭的 RFDR-PMSM 相比,设计的带模块化定子的 RFDR-PMSM 具有更高的功率密度和效率。此外,还提出了一种销钉连接的模块化定子结构,以解决拆除定子轭后定子失去有效支撑的问题。最后,制造出了带有模块化定子的 RFDR-PMSM 原型。通过将实验结果与有限元分析结果进行比较,验证了有限元模型和理论设计的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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