首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Robust Synchronization of Chaotic Nonlinear Systems Subjected to Input Saturation by Employing Nonlinear Observers-Based Chaos Synchronization Methodology
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Robust Synchronization of Chaotic Nonlinear Systems Subjected to Input Saturation by Employing Nonlinear Observers-Based Chaos Synchronization Methodology

机译:通过采用基于非线性观察者的混沌同步方法进行输入饱和的混沌非线性系统的鲁棒同步

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摘要

This paper proposes coupled chaotic synchronous (CCS) observers-based synchronization methodologies to synchronize the leader and follower uncertain nonlinear chaotic systems. Simultaneous synthesis of observer and controller is suggested for the estimation of the states and synchronization of the leader–follower systems, respectively. The estimated synchronization error converges to zero exponentially by using CCS observer and the state estimation error approaches zero by utilizing the feedback controller to guarantee synchronization in addition to state estimation. By utilizing Lyapunov functional, Lipschitz properties of nonlinear dynamics, local sector condition of dead-zone nonlinearity, and gain bounded properties of the exogenous disturbances, nonlinear matrix inequalities-based sufficient conditions are provided for the convergence of the estimated state and synchronization error to zero. Two-step matrix inequality-based methodology is derived for finding the controller and observer gain matrices. Application to uncertain chaotic nonlinear FitzHugh–Nagumo neurons under input saturation and disturbances reveals the effectiveness of the proposed control methodology.
机译:本文提出了耦合混沌同步(CCS)观察者的同步方法,以使领导者和跟随者不确定非线性混沌系统同步。建议分别同时合成观察者和控制器的估计领导权系统的状态和同步。通过使用CCS观察者,估计的同步误差会聚到零归零,并且通过利用反馈控制器来保证除状态估计之外的反馈控制器来保证零来归零。通过利用Lyapunov功能,非线性动力学的Lipschitz属性,死区非线性的局部扇区状况,以及外源扰动的增益界限性,基于非线性矩阵的足够条件,用于估计状态和同步误差为零的趋同。导出两步矩阵不等式的方法,用于查找控制器和观察者增益矩阵。在输入饱和度和扰动下的不确定混沌非线性Fitzhugh-Nagumo神经元揭示了所提出的控制方法的有效性。

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