Journal Article


Robust adaptive synchronization of a class of uncertain chaotic systems with unknown time-delay

Abstract

In this paper, a robust adaptive control strategy is proposed to synchronize a class of uncertain chaotic systems with unknown time delays. Using Lyapunov theory and Lipschitz conditions in chaotic systems, the necessary adaptation rules for estimating uncertain parameters and unknown time delays are determined. Based on the proposed adaptation rules, an adaptive controller is recommended for the robust synchronization of the aforementioned uncertain systems that prove the robust stability of the proposed control mechanism utilizing the Lyapunov theorem. Finally, to evaluate the proposed robust and adaptive control mechanism, the synchronization of two Jerk chaotic systems with finite non-linear uncertainty and external disturbances as well as unknown fixed and variable time delays are simulated. The simulation results confirm the ability of the proposed control mechanism in robust synchronization of the uncertain chaotic systems as well as to estimate uncertain and unknown parameters.

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Authors

Zare, Assef
Mirrezapour, Seyede Zeynab
Hallaji, Majid
Shoeibi, Afshin
Jafari, Mahboobeh
Ghassemi, Navid
Alizadehsani, Roohallah
Mosavi, Amir

Oxford Brookes departments

School of the Built Environment

Dates

Year of publication: 2020
Date of RADAR deposit: 2020-12-18


Creative Commons License This work is licensed under a Creative Commons Attribution 4.0 International License


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