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Maximally Robust Input Preconditioning for Residual Vibration Suppression Using Low-Pass FIR Digital Filters

机译:使用低通FIR数字滤波器的最大鲁棒输入预处理可抑制残余振动

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摘要

A method for suppressing residual vibrations in flexible systems is presented and experimentally demonstrated. The proposed method is based on the preconditioning of the inputs to the system using low-pass Finite Impulse Response (FIR) digital filters. Provided that the cutoff frequency of FIR filters is selected lower than the lowest expected natural frequency of the system and their stop-band is maximized, we show that these filters can be designed to exhibit maximally robust behavior with respect to changes of the system natural frequencies. To perform the proper design of FIR filters for robust vibration suppression, this paper introduces a series of dimensionless performance indexes and the Delay-Error-Order (DEO) curves that represent graphically the delay time introduced by the filter as a function of the remaining residual vibrations, and the filter order. Several classes of FIR filters such as: a) Parks-McClellan; b) Window-based methods (using Chebyshev window); and c) Constrained Least Squares method, are shown to present maximally robust behavior, almost identical to the theoretically predicted. Parallel, they demonstrate excellent vibration suppression while they introduce the minimum possible delay. Further advantages offered by the proposed method, is that no modeling of the flexible system is required, the method can be used in a variety of systems exhibiting vibrations, it is independent of the guidance function and it is simple to implement in practical applications. The results are experimentally verified on a flexible aluminum beam with a significantly varying mass, attached to the end-effector of a robot manipulator. The beam is rotated, using one joint of the manipulator, from an initial to a final position. It is shown that the preconditioned inputs to the flexible system induce very little amount of residual vibrations compared to the inputs with no preconditioning.
机译:提出了一种抑制柔性系统中残余振动的方法,并进行了实验验证。所提出的方法是基于使用低通有限脉冲响应(FIR)数字滤波器对系统输入进行预处理的。假设FIR滤波器的截止频率被选择为低于系统的最低预期自然频率,并且其阻带被最大化,我们将证明这些滤波器可以针对系统自然频率的变化表现出最大的鲁棒性。为了对FIR滤波器进行适当的设计以实现强大的振动抑制效果,本文介绍了一系列无量纲的性能指标和延迟误差阶数(DEO)曲线,这些曲线以图形方式表示了作为剩余残差函数的滤波器引入的延迟时间振动和过滤器顺序。几类FIR滤波器,例如:a)Parks-McClellan; b)基于窗口的方法(使用切比雪夫窗口); c)约束最小二乘法显示出最大的鲁棒性,几乎与理论上的预测相同。同时,它们表现出出色的振动抑制效果,同时引入了最小的延迟。所提出的方法提供的进一步的优点是,不需要对柔性系统进行建模,该方法可以用于表现出振动的各种系统中,它与制导功能无关,并且在实际应用中易于实现。实验结果在附有机器人操纵器末端执行器的,质量明显变化的柔性铝梁上进行了实验验证。使用操纵器的一个关节将光束从初始位置旋转到最终位置。结果表明,与未进行预调节的输入相比,对柔性系统进行预调节的输入所产生的残余振动量非常小。

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