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

机译:致动器饱和度的正线性系统稳定性分析与控制器设计

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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:本文解决了在存在饱和致动器存在下一类正线性系统的稳定性和稳定性问题。该目的是提供稳定性的条件,以及设计状态反馈控制法,使得闭环系统具有渐近的稳定性,并且具有大领域的吸引力。通过Lyapunov函数方法衍生出几种充分的稳定和阳性条件,并分别在连续时间和离散时间案件中进行凸分析。通过求解LMIS约束来求解凸优化问题,介绍了状态反馈控制器设计和概率估计。给出了一个数值例子来显示所提出的方法的有效性。

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