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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Parametric Lyapunov Equation Approach to Stabilization of Discrete-Time Systems With Input Delay and Saturation
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Parametric Lyapunov Equation Approach to Stabilization of Discrete-Time Systems With Input Delay and Saturation

机译:具有输入延迟和饱和的离散系统镇定的参数Lyapunov方程方法

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This paper studies the problem of stabilization of discrete-time linear systems with input delay and saturation nonlinearity. By exploring some further intricate properties of the recently developed parametric Lyapunov equation-based low-gain feedback design approach, solutions are proposed to solve the problems by both state feedback and output feedback. This new approach is not only simpler than the existing method that is based on the eigenstructure assignment technique, but also provides explicit conditions on the low-gain parameter to guarantee the stability of the closed-loop system. Moreover, it is possible by adjusting the low-gain parameter online to achieve global results when the system is subject to both input saturation and time-delay. Also, the delay in the input is allowed to be time-varying in some cases.
机译:本文研究具有输入延迟和饱和非线性的离散线性系统的镇定问题。通过探索最近开发的基于参数Lyapunov方程的低增益反馈设计方法的一些更复杂的特性,提出了通过状态反馈和输出反馈来解决问题的解决方案。这种新方法不仅比基于特征结构分配技术的现有方法简单,而且为低增益参数提供了明确的条件,以确保闭环系统的稳定性。此外,当系统同时受输入饱和和时间延迟的影响时,可以通过在线调整低增益参数来获得全局结果。另外,在某些情况下,输入的延迟会随时间变化。

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