JOURNAL ARTICLE

Adaptive Synchronization for Two Different Stochastic Chaotic Systems with Unknown Parameters via a Sliding Mode Controller

Zengyun WangLihong HuangXuxin YangDingyang Lu

Year: 2013 Journal:   Abstract and Applied Analysis Vol: 2013 Pages: 1-12   Publisher: Hindawi Publishing Corporation

Abstract

This paper investigates the problem of synchronization for two different stochastic chaotic systems with unknown parameters and uncertain terms. The main work of this paper consists of the following aspects. Firstly, based on the Lyapunov theory in stochastic differential equations and the theory of sliding mode control, we propose a simple sliding surface and discuss the occurrence of the sliding motion. Secondly, we design an adaptive sliding mode controller to realize the asymptotical synchronization in mean squares. Thirdly, we design an adaptive sliding mode controller to realize the almost surely synchronization. Finally, the designed adaptive sliding mode controllers are used to achieve synchronization between two pairs of different stochastic chaos systems (Lorenz-Chen and Chen-Lu) in the presence of the uncertainties and unknown parameters. Numerical simulations are given to demonstrate the robustness and efficiency of the proposed robust adaptive sliding mode controller.

Keywords:
Control theory (sociology) Sliding mode control Robustness (evolution) Mathematics Synchronization (alternating current) Controller (irrigation) Chaotic Adaptive control Synchronization of chaos Lyapunov function Computer science Nonlinear system Control (management) Topology (electrical circuits) Artificial intelligence

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Topics

Chaos control and synchronization
Physical Sciences →  Physics and Astronomy →  Statistical and Nonlinear Physics
Nonlinear Dynamics and Pattern Formation
Physical Sciences →  Computer Science →  Computer Networks and Communications
Neural Networks Stability and Synchronization
Physical Sciences →  Computer Science →  Computer Networks and Communications

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