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Rotor Resistance Estimation for Sensorless Induction Motor Drives with A Torque Ripple Reduction Method

机译:具有扭矩脉动减少方法的无传感器感应电动机驱动的转子电阻估计

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摘要

The accuracy of rotor resistance is crucial for speed sensorless induction motor (IM) drives. Furthermore, the persistent excitation (PE) should be satisfied to distinguish rotor resistance from rotor speed for the simultaneous speed and rotor resistance estimation methods in steady states. Thus, the torque ripple is inevitable due to the injection on fundamental magnetizing current reference. However, few researches concentrate on simultaneous speed and rotor resistance estimation with attention paid to torque ripple reduction. To cope with this problem, this paper presents a joint signal injection method to satisfy the PE condition and relieve the torque ripples as well. Compared with the exiting methods, the joint signal of the proposed method is imposed both on magnetizing current reference and torque current reference. Theoretical analysis shows the amplitude of the ripples is significantly reduced. Finally, the effectiveness of the proposed method is verified on a 2.2kW IM setup.
机译:转子电阻的精度对于速度传感器感应电动机(IM)驱动器是至关重要的。此外,应满足持续激励(PE)以区分从转子速度的转子电阻,以在稳态状态下的同时速度和转子电阻估计方法。因此,由于对基本磁化电流参考的喷射,扭矩脉动是不可避免的。然而,很少有研究集中在同时速度和转子电阻估计上,注意力扭转扭转减少。为了应对这个问题,本文介绍了满足PE条件的接头信号注入方法,并释放扭矩波纹。与退出方法相比,在磁化电流参考和扭矩电流参考上施加所提出的方法的接合信号。理论分析显示涟漪的幅度显着降低。最后,在2.2kW IM设置上验证了所提出的方法的有效性。

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