A Novel Disturbance Observer Design Method for Time Delay Systems with Application to Nano Manipulations

W. Fan, P. Yan
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引用次数: 3

Abstract

In this paper, a novel disturbance observer (DOB) design method for time delay systems is proposed to compensate system uncertainties and unknown disturbances in nano manipulating systems. A Modified Disturbance Observer (MDOB) structure for time delay systems is utilized, where the design of low pass filter (LPF) in MDOB is formulated to a mixed sensitivity optimization of infinite dimensional systems. This problem is then solved by Skew-Toeplitz based approach. Furthermore, the constraint conditions of LPF can be realized by the selection of weighting functions. Finally, experimental validation of the proposed DOB design method is performed on a piezo-actuated nano-positioning stage, where the experimental results demonstrate the effectiveness of the proposed approach.
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一种应用于纳米操作的时滞系统扰动观测器设计新方法
针对纳米操纵系统中的不确定性和未知干扰,提出了一种新的时滞系统扰动观测器设计方法。提出了一种用于时滞系统的改进扰动观测器(MDOB)结构,其中MDOB中的低通滤波器(LPF)的设计被表述为无限维系统的混合灵敏度优化。然后用Skew-Toeplitz方法解决这个问题。此外,LPF的约束条件可以通过权重函数的选择来实现。最后,在压电驱动的纳米定位台上对所提出的DOB设计方法进行了实验验证,实验结果证明了所提出方法的有效性。
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