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Torque ripple minimization in dual inverter open-end winding PMSM drives with non-sinusoidal back-EMFs by harmonic current suppression

机译:双逆变器开口绕组PMSM在双变频器开口绕组中的扭矩纹波最小化,通过谐波电流抑制与非正弦波ePFFS驱动

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This paper presents a closed-loop control strategy for dual inverter-fed, permanent magnet synchronous motors (PMSM) with non-sinusoidal back electromotive force (back-EMF). The inverters are connected to both ends of the machine winding but use only one power source, thus providing a path for zero sequence currents to circulate in the motor windings. Due to the non-sinusoidal back-EMFs and circulation of zero sequence currents, the machine electrical torque is now a function of the rotor position that leads to torque ripple oscillations. Therefore, a closed-loop control strategy to suppress the circulation of zero sequence currents and amplitude of the dominant current harmonics caused by the non-sinusoidal back-EMFs is developed and demonstrated by experiment. The zero sequence component is considered as one additional degree of freedom that has to be managed. Therefore, the control scheme to regulate the ac signals in the regulators is developed and an approach to minimizing the torque ripples is presented.
机译:本文介绍了具有非正弦反向电动势(后EMF)的双逆变器供给的永磁同步电机(PMSM)的闭环控制策略。逆变器连接到机器绕组的两端,但仅使用一个电源,从而提供用于零序电流的路径以在电动机绕组中循环。由于零序列电流的非正弦波emf和循环,机器电扭矩现在是转子位置的函数,其导致扭矩波动振荡。因此,通过实验开发和证明闭环控制策略抑制零序电流循环的循环和由非正弦反型计算机引起的主流电流谐波的幅度。零序分量被认为是必须管理的一种额外的自由度。因此,开发了调节调节器中AC信号的控制方案,并提出了最小化扭矩涟漪的方法。

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