Additional Magnetic Field of Dual-Parallel Rotor Permanent Magnet Synchronous Motor and its Influence on Electromagnetic Torque

Yang Chen;Dajun Tao;Baojun Ge
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Abstract

The coupling effect of dual-parallel rotor connected stator permanent magnet synchronous motor not only affects the magnetic field in the coupling area, but also generates an additional magnetic field in the uncoupled area. The characteristics of the additional magnetic field and its influence on electromagnetic torque are studied in this paper. The topology and parameters of motor are described briefly. The existence of additional magnetic field is proved by the simulation models under two boundary conditions, and its characteristics and source are analyzed. The analytical model is established, and the influence of key parameters on the additional magnetic field is discussed. On this basis, the influence of the additional magnetic field on the electromagnetic torque of the motor is studied, and the analytical expression of the additional torque is constructed. The fluctuation rule is analyzed, and the additional magnetic field separation model is proposed. The theoretical analysis and simulation results reveal and improve the internal mechanism of reducing motor torque ripple by optimizing the duty angle and coupling distance. Finally, a prototype test platform is built to verify the correctness of the proposed theory and the accuracy of the simulation model.
双并联转子永磁同步电机附加磁场及其对电磁转矩的影响
双并联转子连接定子永磁同步电机的耦合效应不仅影响耦合区域的磁场,而且在非耦合区域产生附加磁场。本文研究了附加磁场的特性及其对电磁转矩的影响。简要介绍了电机的拓扑结构和参数。在两种边界条件下,通过仿真模型证明了附加磁场的存在性,并分析了附加磁场的特征和来源。建立了解析模型,讨论了关键参数对附加磁场的影响。在此基础上,研究了附加磁场对电机电磁转矩的影响,构造了附加转矩的解析表达式。分析了波动规律,提出了附加磁场分离模型。理论分析和仿真结果揭示并完善了通过优化占空角和耦合距离来减小电机转矩脉动的内在机理。最后,搭建了一个原型测试平台,验证了所提理论的正确性和仿真模型的准确性。
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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