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Analytical Investigation on the Power Factor of a Flux-Modulated Permanent-Magnet Synchronous Machine

机译:磁通调制永磁同步电机功率因数的分析研究

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Flux-modulated permanent-magnet synchronous machine (FM-PMSM) is characterized as a high-torque direct-drive electrical machine, but may suffer from the low power factor. This paper aims to investigate the issue of the low power factor in theory and explore the possibilities for improvement. An analytical model for the FM-PMSM is developed to obtain the magnetic field distribution, and its accuracy is verified by the finite-element method. On the basis of the developed analytical model, a fast approach is developed to predict the power factor of the FM-PMSM. The analytical results indicate that the low flux density in the inner air gap excited by the PMs is responsible for the low power factor. Finally, the influences of several key design parameters on the power factor are studied, and the FM-PMSM is optimized afterward. The results show that the power factor of the FM-PMSM could be improved by 20% in comparison with the initial design.
机译:磁通调制永磁同步电机(FM-PMSM)的特点是高转矩直接驱动电机,但可能会遭受低功率因数的困扰。本文旨在从理论上研究低功率因数的问题,并探讨改进的可能性。建立了FM-PMSM的解析模型以获得磁场分布,并通过有限元方法验证了其准确性。在已开发的分析模型的基础上,开发了一种快速方法来预测FM-PMSM的功率因数。分析结果表明,PM激发的内部气隙中的低通量密度是造成低功率因数的原因。最后,研究了几个关键设计参数对功率因数的影响,然后对FM-PMSM进行了优化。结果表明,与初始设计相比,FM-PMSM的功率因数可以提高20%。

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