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Memoryless stabilization of uncertain linear systems including time-varying state delays

机译:不确定线性系统的无记忆稳定,包括时变状态延迟

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The problem of stabilizing a class of uncertain time-delay systems via memoryless linear feedback is examined. The systems under consideration are linear systems with time-varying state delays. They also contain uncertain parameters (possibly time-varying) whose values are known only to within a prescribed compact bounding set. The main contribution given is to enlarge the class of time-delay systems for which one can construct a stabilizing memoryless linear feedback controller. Within this framework, a novel notion of robust memoryless stabilizability is first introduced via the method of Lyapunov functionals. Then a sufficient condition for the stabilizability is proposed. It is shown that solvability of a parameterized Riccati equation can be used to determine whether the time-delay system satisfies the sufficient condition. If there exists a positive definite symmetric solution satisfying the Riccati equation, a suitable memoryless linear feedback law can be derived.
机译:研究了通过无记忆线性反馈稳定一类不确定时滞系统的问题。所考虑的系统是具有时变状态延迟的线性系统。它们还包含不确定参数(可能随时间变化),这些参数的值仅在规定的紧定边界集中是已知的。给出的主要贡献是扩大了时延系统的种类,为此人们可以构造一个稳定的无记忆线性反馈控制器。在此框架内,首先通过Lyapunov泛函方法引入了一种健壮的无记忆稳定性的新概念。然后提出了稳定的充分条件。结果表明,可以使用参数化Riccati方程的可解性来确定时滞系统是否满足充分条件。如果存在满足Riccati方程的正定对称解,则可以得出合适的无记忆线性反馈定律。

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