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Constrained predictive synchronization of discrete-time chaotic Lur'e systems with time-varying delayed feedback control

机译:具有时变时滞反馈控制的离散时间混沌Lur'e系统的约束预测同步

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摘要

This paper presents a predictive synchronization method for discrete-time chaotic Lur'e systems with input constraints by using time-varying delayed feedback control. Based on the model predictive control scheme, a delay-dependent stabilization criterion is derived for the synchronization of chaotic systems that is represented by Lur'e systems with input constraints. By constructing a suitable Lyapunov-Krasovskii functional and combining with a reciprocally convex combination technique, a delay-dependent stabilization condition for synchronization is obtained via linear matrix inequality (LMI) formulation. The control inputs are obtained by solving a min-max problem subject to cost monotonicity, which is expressed in terms of LMIs. The effectiveness of the proposed method will be verified throughout a numerical example.
机译:本文提出了一种时变时滞反馈控制的具有输入约束的离散时间混沌Lur'e系统预测同步方法。基于模型预测控制方案,推导了基于时滞的稳定准则,用于混沌系统的同步,该混沌系统由具有输入约束的Lur'e系统表示。通过构造合适的Lyapunov-Krasovskii泛函并与双向凸组合技术相结合,可以通过线性矩阵不等式(LMI)公式获得用于同步的延迟依赖稳定条件。控制输入​​是通过解决受成本单调性影响的最小-最大问题而获得的,该问题用LMI表示。整个数值示例将验证所提出方法的有效性。

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