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Online tuning method for notch filter depth in industrial servo systems

机译:工业伺服系统陷波滤波器深度在线调整方法

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摘要

This paper presents an online tuning method for notch filter depths in industrial servo systems. Notch filters are commonly utilized to suppress resonances in servo systems. Using a damping ratio of notch-filter zeros is especially important when the resonance has a damped behavior. This paper develops an online tuning method to adjust the damping ratio of notch-filter zeros, by adjusting the depth parameter of a bi-quad notch filter. The developed tuning method uses the electrical current command of a servo system as an input to detect a resonance. When a resonance occurs, the tuning method increases the depth parameter to decrease the damping ratio of notch-filter zeros, and then the tuning method checks whether the resonance is suppressed. If the resonance is not suppressed and the depth parameter has not reached the upper limit, the tuning method repeats the process of increasing the depth parameter. After several iterations, an appropriate depth parameter is selected and the resonance can be suppressed. Experiments are performed using two servo systems which are coupled with a ball-screw-drive load and a belt-drive load, respectively. The resonance of the belt-drive load has a behavior that is more highly damped behavior than that of the ball-screw-drive load. Experimental results show that the resonances of both systems are successfully suppressed using the developed tuning method.
机译:本文提出了一种用于工业伺服系统中陷波滤波器深度的在线调整方法。陷波滤波器通常用于抑制伺服系统中的共振。当谐振具有阻尼行为时,使用陷波滤波器零的阻尼比尤为重要。本文提出了一种在线调整方法,通过调整双二阶陷波滤波器的深度参数来调整陷波滤波器零点的阻尼比。所开发的调谐方法使用伺服系统的电流指令作为输入来检测共振。当发生共振时,调整方法增加深度参数以减小陷波滤波器零点的阻尼比,然后调整方法检查是否抑制了共振。如果未抑制共振并且深度参数尚未达到上限,则调整方法将重复增加深度参数的过程。经过几次迭代后,选择合适的深度参数,可以抑制共振。使用两个分别与滚珠丝杠驱动负载和皮带驱动负载耦合的伺服系统进行实验。皮带驱动负载的共振具有比滚珠丝杠驱动负载更高的阻尼性能。实验结果表明,使用改进的调谐方法可以成功地抑制两个系统的共振。

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