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Stability analysis and controller design of positive linear systems subject to actuator saturation

机译:受执行器饱和影响的正线性系统的稳定性分析和控制器设计

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This paper addresses the stability and stabilization problems for a class of positive linear systems in the presence of saturating actuators. The objective is to give conditions of the stability, and design state feedback control laws such that the closed-loop systems is asymptotically stable and positive at the origin with a large domain of attraction. Several sufficient conditions for stabilization and positivity are derived via the Lyapunov functions method and convex analysis in both the continuous-time and the discrete-time cases, respectively. The state feedback controller design and the estimation of domain of attraction are presented by solving a convex optimization problem with LMIs constraints. A numerical example is given to show the effectiveness of the proposed methods.
机译:本文针对存在饱和执行器的一类正线性系统的稳定性和稳定性问题。目的是给出稳定性的条件,并设计状态反馈控制律,以使闭环系统在源点具有较大吸引力的范围内是渐近稳定和正的。分别在连续时间和离散时间两种情况下,通过Lyapunov函数方法和凸分析得出了几个稳定和正性的充分条件。通过解决具有LMI约束的凸优化问题,提出了状态反馈控制器的设计和吸引域的估计。数值算例表明了所提方法的有效性。

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