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An Axial Flux Double-Rotor Counter-Rotating Permanent Magnet Machine for Underwater Vehicles

机译:水下航行器轴向磁通双转子反向旋转永磁机

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The research on the counter-rotating motor which can be used to drive the counter-rotating propeller is of great significance to improve the dynamic performance of underwater vehicles. This paper proposed an axial flux counter-rotating motor (AFCRM) with two counter-rotating rotors and a modular stator which can eliminate the brushes and slip rings, and at the meant time offer better torque density. The 2D linear motor model based on the equivalent magnetic reluctance in the magnetic circuit was proposed to analyze the AFCRM with an acceptable accuracy. And the electromagnetic performance of the AFCRM were analyzed and adjusted using the proposed 2D model. The magnetic fields on both sides will be periodically in series or in parallel, which causes the back EMF distortion and torque ripple, so a tooth and slot offset structure of the AFCRM was proposed. Finally, the advantages of AFCRM are presented by comparing AFCRM with the other two solutions for the counter-rotating propeller underwater vehicles.
机译:可用于驱动反向旋转螺旋桨的反向旋转电动机的研究对于提高水下航行器的动力性能具有重要意义。本文提出了一种具有两个反向转子和一个模块化定子的轴向磁通反向电动机(AFCRM),该定子可以消除电刷和滑环,同时提供更好的转矩密度。提出了基于磁路中等效磁阻的二维线性电动机模型,以可接受的精度对AFCRM进行了分析。并使用提出的二维模型对AFCRM的电磁性能进行了分析和调整。两侧的磁场将周期性地串联或并联,这会引起反电动势失真和转矩波动,因此提出了AFCRM的齿和槽偏移结构。最后,通过将AFCRM与反向旋转螺旋桨水下航行器的其他两种解决方案进行比较,展示了AFCRM的优势。

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