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Combined FIR and Fractional-Order Repetitive Control for Harmonic Current Suppression of Magnetically Suspended Rotor System

机译:结合FIR和分数阶重复控制来抑制磁悬浮转子系统的谐波电流

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摘要

Magnetically suspended rotor has the characteristics of no friction and active vibration control. The mass unbalance and sensor runout of the rotor induce harmonic current, which will cause harmonic vibration. The ratio of the sampling rate to the fundamental frequency of harmonic current is often not an integer. The existing repetitive control (RC) for the suppression of harmonic current in magnetic bearing is applicable for the integer case. Harmonic current suppression performance is degraded drastically if the ratio is fractional. In this paper, combined finite-impulse response (FIR) and fractional-order RC is proposed. FIR filter and fractional-order RC are combined to perform harmonic current suppression at arbitrary frequency. Phase compensator is designed to enhance the stability of magnetically suspended rotor system. Experimental results are given to verify the effectiveness and superiority of the proposed method.
机译:磁悬浮转子具有无摩擦和主动振动控制的特点。转子的质量不平衡和传感器跳动会感应出谐波电流,这会引起谐波振动。采样率与谐波电流的基频之比通常不是整数。现有的用于抑制电磁轴承中谐波电流的重复控制(RC)适用于整数情况。如果该比率为分数,则谐波电流抑制性能将大大降低。本文提出了有限脉冲响应(FIR)和分数阶RC的组合。 FIR滤波器和分数阶RC组合在一起以任意频率执行谐波电流抑制。相位补偿器旨在增强磁悬浮转子系统的稳定性。实验结果证明了该方法的有效性和优越性。

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