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Observer-based controller design of time-delay systems with an interval time-varying delay

机译:间隔时变时滞的基于观测器的控制器设计

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摘要

This paper considers the problem of designing an observer-based output feedback controller to exponentially stabilize a class of linear systems with an interval time-varying delay in the state vector. The delay is assumed to vary within an interval with known lower and upper bounds. The time-varying delay is not required to be differentiable, nor should its lower bound be zero. By constructing a set of Lyapunov–Krasovskii functionals and utilizing the Newton–Leibniz formula, a delay-dependent stabilizability condition which is expressed in terms of Linear Matrix Inequalities (LMIs) is derived to ensure the closed-loop system is exponentially stable with a prescribed α-convergence rate. The design of an observerbased output feedback controller can be carried out in a systematic and computationally efficient manner via the use of an LMI-based algorithm. A numerical example is given to illustrate the design procedure.
机译:本文考虑了设计基于观察者的输出反馈控制器以指数稳定状态向量中具有间隔时变延迟的一类线性系统的问题。假定延迟在具有已知下限和上限的间隔内变化。时变延迟不需要是可微的,其下限也不应该是零。通过构造一组Lyapunov–Krasovskii泛函并利用Newton–Leibniz公式,得出了一个依赖于线性矩阵不等式(LMI)表示的依赖于延迟的稳定度条件,以确保闭环系统在规定的条件下是指数稳定的。 α收敛速度。基于观察者的输出反馈控制器的设计可以通过使用基于LMI的算法以系统化和计算高效的方式进行。数值例子说明了设计过程。

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