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Cancelation of Torque Ripples in PMSM via a Novel Minimal Parameter Harmonic Flux Estimator

机译:通过新型最小参数谐波通量估计器消除PMSM中的转矩波动

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摘要

This paper presents a novel approach for treating the harmonic torque in permanent magnet motors at selected harmonic orders. The method is based on the online estimation of the motor harmonic flux. For this purpose, a novel minimal parameter harmonic flux estimator (MPHFE) is developed. The MPHFE is formulated such that the inductance, resistance, and stator current and its derivative are not necessary for the estimation of the harmonic flux. This was achieved by forcing the harmonic current to zero through the combined action of a field-oriented controller (FOC) and a feedforward controller. Subsequently, the harmonic flux can be obtained directly from the estimated harmonic back EMF without the involvement of other motor parameters. Finally, the estimated flux is used in conjunction with a comprehensive model of the motor harmonic torque to determine the stator current compensation for eliminating the torque harmonic. Experimental results presented from a permanent magnet motor confirm the theoretical claims in this paper as well as demonstrate the effectiveness of the proposed method to reduce the magnitude of the harmonic torque significantly.
机译:本文提出了一种用于处理选定谐波次数的永磁电动机谐波转矩的新颖方法。该方法基于电动机谐波通量的在线估计。为此,开发了一种新颖的最小参数谐波通量估计器(MPHFE)。 MPHFE的公式使得电感,电阻和定子电流及其导数对于谐波通量的估计不是必需的。这是通过磁场定向控制器(FOC)和前馈控制器的组合作用将谐波电流强制为零来实现的。随后,可以直接从估算的谐波反电动势获得谐波通量,而无需其他电动机参数的参与。最后,将估计的磁通量与电动机谐波转矩的综合模型结合使用,以确定用于消除转矩谐波的定子电流补偿。永磁电动机的实验结果证实了本文的理论要求,并证明了所提出的方法显着降低谐波转矩幅度的有效性。

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