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A novel stator flux oriented V/f control method in sensorless induction motor drives for accuracy improvement and oscillation suppression

机译:无传感器感应电动机驱动器中面向定子磁链的新型V / f控制方法,可提高精度并抑制振荡

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This paper presents a novel V/f control method for speed sensorless induction motor drives. The proposed method keeps a constant steady-state stator flux in d axis by adding the stator resistance compensation. And the speed accuracy is improved by using the precise slip frequency compensation. Besides, a novel oscillation suppression compensation method is proposed to improve the stability and convergence rate of the drive system both in motoring and regenerating operations. The compensation is achieved by feeding both d-axis and q-axis dynamic current to frequency with different feedback parameters. In this paper, the linear model of this proposed system is derived and analyzed to design proper feedback parameters. In addition, the parameter sensitivities under the proposed V/f controlled method are studied based on the steady-state operating point analysis. The simulation and experimental results based on 15kW and 2.2kW IM drive systems are presented to confirm the validity the proposed method.
机译:本文提出了一种新型的无速度感应电动机驱动器的V / f控制方法。所提出的方法通过增加定子电阻补偿,使d轴上的定子磁通量保持恒定。通过使用精确的转差频率补偿,可以提高速度精度。此外,提出了一种新颖的振荡抑制补偿方法,以提高驱动系统在电动和再生操作中的稳定性和收敛速度。通过将d轴和q轴动态电流馈入具有不同反馈参数的频率来实现补偿。在本文中,推导并分析了该系统的线性模型,以设计适当的反馈参数。此外,基于稳态工作点分析,研究了所提出的V / f控制方法下的参数灵敏度。给出了基于15kW和2.2kW的IM驱动系统的仿真和实验结果,以验证该方法的有效性。

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