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Optimal Multi-Harmonic Current Injection Strategy for an Asymmetrical Nine-Phase PMSM

机译:不对称九相永磁同步电机的最优多谐波电流注入策略

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The paper develops a strategy to enhance the torque development for a nine-phase PMSM with an asymmetrical winding configuration and a single isolated neutral point. The approach is based on the simultaneous exploitation of different spatial harmonics of the magnetic flux density in the air-gap, which requires both a non-sinusoidal set of PM induced back-EMFs and a non-sinusoidal set of phase currents (thus implying the injection of multiple harmonics). By formulating the machine’s mathematical model in a proper multiple synchronous reference frames, the electromagnetic torque is given by the superposition of different harmonic quadrature current component contributions: their simultaneous utilization allows to meet a set optimization goal. The proposed approach focuses on the minimization of the average stator losses for a given reference torque. The optimal solution is found analytically and validated numerically for a specific case study. With respect to the sole fundamental current exploitation, the proposed technique allows for a significant reduction of the average losses but, given the machine’s configuration, it requires an uneven distribution of the third harmonic current component among the nine phases.
机译:本文提出了一种策略,以增强具有不对称绕组配置和单个隔离中性点的九相PMSM的转矩发展。该方法基于同时利用气隙中磁通密度的不同空间谐波,这既需要一组非正弦的PM感应反电动势,也需要一组非正弦的相电流(因此暗示着注入多个谐波)。通过在适当的多个同步参考系中制定机器的数学模型,电磁转矩由不同的谐波正交电流分量的叠加来给出:它们的同时利用可以满足设定的优化目标。所提出的方法集中于给定参考转矩下的平均定子损耗的最小化。可以通过分析找到最佳解决方案,并针对特定案例进行数值验证。对于唯一的基本电流利用,所提出的技术可以显着降低平均损耗,但是,鉴于电机的配置,它要求九个相之间的三次谐波电流分量分布不均。

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