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Stability, positive invariance and design of constrained regulators for networked control systems

机译:网络控制系统的稳定度,正不变性和约束调节器的设计

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In this article, the stability analysis, the positive invariance of polyhedral sets and the design of state-feedback regulators for networked control systems (NCS) with bounded transmission delays, constant and unknown or time-varying, are investigated. The dynamics of the NCS is described by autoregressive-moving-average (ARMA) models. Contrary to former approaches based on quadratic Lyapunov functions, in this article polyhedral Lyapunov functions are used for both stability and positive invariance analysis and state-feedback synthesis. Then, based on the property that the exponential of a matrix can be expressed as a weighted sum of its constituent matrices, it is proven that the problems of determination of stability margins or the design of stabilising controllers can be reduced to linear programming optimisation problems. The use of ARMA models allows the development of methods for the design of state-feedback controllers satisfying state constraints or convergence rate specifications defined on the NCS state space and not on the state of an augmented state space representation.
机译:在本文中,研究了具有受限传输延迟,恒定和未知或时变的网络控制系统(NCS)的稳定性分析,多面体集的正不变性和状态反馈调节器的设计。 NCS的动力学由自回归移动平均(ARMA)模型描述。与以前基于二次Lyapunov函数的方法相反,本文将多面Lyapunov函数用于稳定性和正不变性分析以及状态反馈综合。然后,基于矩阵的指数可以表示为其组成矩阵的加权和的性质,证明可以将确定稳定裕度或稳定控制器的设计问题简化为线性规划优化问题。 ARMA模型的使用允许开发用于设计状态反馈控制器的方法,这些控制器满足在NCS状态空间而不是在增强状态空间表示的状态上定义的状态约束或收敛速率规范。

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