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Permanent-magnet flux-switching integrated starter generator with different rotor configurations for cogging torque and torque ripple mitigations

机译:具有不同转子配置的永磁通量开关集成式起动发电机,可减小齿槽转矩和减小转矩脉动

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摘要

This paper investigates the cogging torque and torque ripple features of a permanent-magnet flux-switching integrated starter generator. The effects of the rotor pole arc width on the cogging torque, torque ripple, and output torque are first established using finite-element analysis (FEA). Three torque ripple reduction techniques based on the optimization of three different rotor pole configurations, namely, uniform, step skewed, and axial pairing, are then proposed. The torque characteristics of each rotor configuration at varying load currents and phase angles are studied in detail. A prototype machine with a common stator and the three optimized rotor configurations are built for experimental validation. Both the FEA results and the experimental tests show that the step skewed and axial pairing techniques can alleviate the cogging torque significantly, but the latter is less effective than the former in reducing the overall torque ripple.
机译:本文研究了永磁通量开关集成式起动机发电机的齿槽转矩和转矩脉动特性。首先使用有限元分析(FEA)确定转子极弧宽度对齿槽转矩,转矩脉动和输出转矩的影响。然后,提出了三种基于优化三种不同转子磁极配置的转矩脉动减小技术,即均匀,阶跃偏斜和轴向配对。详细研究了每个转子配置在变化的负载电流和相角下的转矩特性。建立具有通用定子和三个优化转子配置的原型机以进行实验验证。有限元分析结果和实验测试均表明,阶跃偏斜和轴向配对技术可以显着减轻齿槽转矩,但是后者在降低总体转矩脉动方面效果不如前者。

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