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Study on the Electromagnetic Design and Analysis of Axial Flux Permanent Magnet Synchronous Motors for Electric Vehicles

机译:电动汽车轴向通量永磁同步电动机电磁设计及分析研究

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摘要

In order to provide a complete solution for designing and analyzing the axial flux permanent magnet synchronous motor (AFPMSM) for electric vehicles, this paper covers the electromagnetic design and multi-physics analysis technology of AFPMSM in depth. Firstly, an electromagnetic evaluation method based on an analytical algorithm for efficient evaluation of AFPMSM was studied. The simulation results were compared with the 3D electromagnetic field simulation results to verify the correctness of the analytical algorithm. Secondly, the stator core was used to open the auxiliary slot to optimize the torque ripple of the AFPMSM, which reduced the torque ripple peak-to-peak value by 2%. From the perspective of ensuring the reliability, safety, and driving comfort of the traction motor in-vehicle working conditions, multi-physics analysis software was used to analyze and check the vibration and noise characteristics and temperature rise of several key operating conditions of the automotive AFPMSM. The analysis results showed that the motor designed in this paper can operate reliably.
机译:为了为电动车辆设计和分析轴向通量永磁同步电动机(AFPMSM)提供完整的解决方案,涵盖了AFPMSM深度的电磁设计和多物理分析技术。首先,研究了基于用于高效评估AFPMSM的分析算法的电磁评估方法。将仿真结果与3D电磁场仿真结果进行比较,以验证分析算法的正确性。其次,定子芯用于打开辅助槽以优化AFPMSM的扭矩脉动,这将扭矩脉动峰值值降低2%。从确保牵引电动机车载工作条件的可靠性,安全性和驾驶舒适性的角度来看,使用多物理分析软件来分析和检查汽车若干关键操作条件的振动和噪声特性和温度升高AFPMSM。分析结果表明,本文设计的电机可可靠地运行。

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