One advantage of multi-'/> Third harmonic current injection into highly saturated multi-phase machines
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Third harmonic current injection into highly saturated multi-phase machines

机译:向高饱和多相电机注入三次谐波电流

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One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux for additional torque generation. This effect can be maximised for Permanent Magnet Synchronous Machines (PMSM) with a high third harmonic content in the magnet flux. This paper discusses the effects of third harmonic current injection (THCI) on a five-phase PMSM with a conventional magnet shape depending on saturation. The effects of THCI in five-phase machines are shown in a 2D FEM model in Ansys Maxwell verified by measurement results. The results of the FEM model are analytically analysed using the Park model. It is shown in simulation and measurement that the torque improvement by THCI increases significantly with the saturation level, as the amplitude of the third harmonic flux linkage increases with the saturation level but the phase shift of the rotor flux linkage has to be considered. This paper gives a detailed analysis of saturation mechanisms of PMSM, which can be used for optimizing the efficiency in operating points of high saturations, without using special magnet shapes.
机译:多相电机的一个优点是可以利用转子磁通的三次谐波来产生额外的转矩。对于在磁通量中具有高三次谐波含量的永磁同步电机(PMSM),可以最大程度地发挥这种效果。本文讨论了三次谐波电流注入(THCI)对具有常规磁体形状(取决于饱和度)的五相PMSM的影响。测量结果验证了Ansys Maxwell中2D FEM模型中THCI在五相电机中的作用。使用Park模型对FEM模型的结果进行分析。在仿真和测量中显示,由于三次谐波磁链的振幅随饱和度的增加而增加,THCI的转矩改善随饱和度的增加而显着增加,但必须考虑转子磁链的相移。本文详细分析了PMSM的饱和机理,可将其用于优化高饱和度工作点的效率,而无需使用特殊的磁体形状。

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