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Complete (anti-)synchronization of chaotic systems with fully uncertain parameters by adaptive control

机译:通过自适应控制实现具有完全不确定参数的混沌系统的完全(反)同步

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This paper addresses a unified mathematical expression describing a class of chaotic systems, for which the problem of synchronization and anti-synchronization between different chaotic systems with fully uncertain parameters and different structure are studied. Based on the Lyapunov stability theory, a novel, simple, and systemic adaptive synchronization controller is designated, the analytic expression of the controller and the adaptive laws of parameters are developed. Moreover, the proposed scheme can be extended to anti-synchronize a class of chaotic systems. Two chaotic systems with different structure and fully uncertain parameters are employed as the examples to show the effectiveness of the proposed adaptive synchronization and anti-synchronization schemes. Additionally, the robustness and noise immunity of the adaptive synchronization scheme is investigated by measuring the mean squared error of the systems.
机译:本文提出了描述一类混沌系统的统一数学表达式,研究了参数完全不确定,结构不同的混沌系统之间的同步和反同步问题。基于李雅普诺夫稳定性理论,设计了一种新颖,简单,系统的自适应同步控制器,开发了控制器的解析表达式和参数的自适应律。此外,所提出的方案可以扩展为反同步一类混沌系统。以两个结构不同,参数完全不确定的混沌系统为例,说明所提出的自适应同步和反同步方案的有效性。另外,通过测量系统的均方误差来研究自适应同步方案的鲁棒性和抗噪性。

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