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首页> 外文期刊>IEEE Transactions on Circuits and Systems. 1, Fundamental Theory and Applications >An Observer-Based Approach for Input-Independent Global Chaos Synchronization of Discrete-Time Switched Systems
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An Observer-Based Approach for Input-Independent Global Chaos Synchronization of Discrete-Time Switched Systems

机译:基于观察者的离散时间切换系统独立于输入的全局混沌同步方法

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摘要

The work presented in this paper deals with chaos synchronization of discrete-time switched systems for communication purposes. In a chaotic masking scheme, the main problem arising lies in the fact that the state-reconstruction-error equation involves a term depending on the embedded information which may prevent the convergence. To tackle such a situation, an input-independent global synchronization (TIGS) observer-based method is proposed. It differs from the standard unknown input observers framework, which cannot be applied for the class of systems considered in this paper. It is shown that IIGS may result from both a special partial-pole placement and the notion of polyquadratic stability. Two configurations are distinguished: a subsystem configuration and an observer one. The analysis in the subsystem configuration or the design in the observer configuration is performed by solving a tractable linear-matrix inequalities setting. Two illustrative examples are given.
机译:本文介绍的工作涉及用于通信目的的离散时间交换系统的混沌同步。在混沌掩蔽方案中,出现的主要问题在于以下事实:状态重建误差方程包含取决于嵌入信息的项,这可能会阻止收敛。为了解决这种情况,提出了一种基于输入无关的全局同步(TIGS)观察者的方法。它不同于标准的未知输入观察者框架,后者不能应用于本文所考虑的系统类别。结果表明,IIGS可能是由于特殊的局部极点布置和多二次稳定性概念所致。区分两种配置:子系统配置和观察者配置。子系统配置中的分析或观察者配置中的设计是通过求解可处理的线性矩阵不等式设置来执行的。给出两个说明性的例子。

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