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Variable structure observer design for a class of uncertain systems with a time-varying delay

机译:一类具有时变时滞的不确定系统的变结构观测器设计

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摘要

Design of a state observer is an important issue in control systems and signal processing. It is well known that it is difficult to obtain the desired properties of state feedback control if some or all of the system states cannot be directly measured. Moreover, the existence of a lumped perturbation and/or a time delay usually reduces the system performance or even produces an instability in the closed-loop system. Therefore, in this paper, a new Variable Structure Observer (VSO) is proposed for a class of uncertain systems subjected to a time varying delay and a lumped perturbation. Based on the strictly positive real concept, the stability of the equivalent error system is verified. Based on the generalized matrix inverse approach, the global reaching condition of the sliding mode of the error system is guaranteed. Also, the proposed variable structure observer will be shown to possess the invariance property in relation to the lumped perturbation, as the traditional variable structure controller does. Furthermore, two illustrative examples with a series of computer simulation studies are given to demonstrate the effectiveness of the proposed design method.
机译:状态观察器的设计是控制系统和信号处理中的重要问题。众所周知,如果某些或所有系统状态不能直接测量,则难以获得状态反馈控制的期望特性。此外,集总扰动和/或时间延迟的存在通常会降低系统性能,甚至会导致闭环系统不稳定。因此,在本文中,针对一类时变时滞和集总扰动的不确定系统,提出了一种新的可变结构观测器(VSO)。基于严格正实概念,验证了等效误差系统的稳定性。基于广义矩阵逆方法,保证了误差系统滑模的全局达到条件。而且,将显示出所提出的可变结构观测器具有与集总摄动有关的不变性,就像传统的可变结构控制器所做的那样。此外,给出了两个带有一系列计算机仿真研究的说明性示例,以证明所提出的设计方法的有效性。

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