A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay

In this paper, a new method is presented for synchronization between two fractional order delayed chaotic systems, while there is uncertainty on the models and external disturbances enter the systems at the same time. The considered delay in the fractional order system is unspecified and varied with...

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Main Authors: Hai Gu, Jianhua Sun, Hadi Imani
Format: Article
Language:English
Published: Taylor & Francis Group 2022-12-01
Series:Systems Science & Control Engineering
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/21642583.2022.2040059
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author Hai Gu
Jianhua Sun
Hadi Imani
author_facet Hai Gu
Jianhua Sun
Hadi Imani
author_sort Hai Gu
collection DOAJ
description In this paper, a new method is presented for synchronization between two fractional order delayed chaotic systems, while there is uncertainty on the models and external disturbances enter the systems at the same time. The considered delay in the fractional order system is unspecified and varied with time, and of course it is present in different forms in master and slave systems. External disturbances enter the master–slave systems in a finite manner, albeit with an undetermined upper bound, and uncertainty is present in the nonlinear functions of chaotic systems. The goal of synchronizing a particular class of master–slave chaotic systems is achieved through a combination of adaptive and sliding mode techniques. The sliding mode method has been used to cover the effects of uncertainties and delay functions, and an adaptive method has been applied to ensure the stability of the proposed synchronization technique, disturbance upper bound estimation and overcoming the effects of delay variability. A practical example of the innovative method is simulated in MATLAB environment and the obtained results confirm the optimal efficiency of the proposed synchronization method.
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spelling doaj.art-994f2485386d40aab0da864ce6c8982c2022-12-22T03:21:48ZengTaylor & Francis GroupSystems Science & Control Engineering2164-25832022-12-0110152853810.1080/21642583.2022.2040059A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delayHai Gu0Jianhua Sun1Hadi Imani2School of Mechanical Engineering, Nantong Institute of Technology, Nantong, People’s Republic of ChinaSchool of Mechanical Engineering, Nantong Institute of Technology, Nantong, People’s Republic of ChinaDepartment of electrical Engineering, Ahar Branch, Islamic Azad University, Ahar, IranIn this paper, a new method is presented for synchronization between two fractional order delayed chaotic systems, while there is uncertainty on the models and external disturbances enter the systems at the same time. The considered delay in the fractional order system is unspecified and varied with time, and of course it is present in different forms in master and slave systems. External disturbances enter the master–slave systems in a finite manner, albeit with an undetermined upper bound, and uncertainty is present in the nonlinear functions of chaotic systems. The goal of synchronizing a particular class of master–slave chaotic systems is achieved through a combination of adaptive and sliding mode techniques. The sliding mode method has been used to cover the effects of uncertainties and delay functions, and an adaptive method has been applied to ensure the stability of the proposed synchronization technique, disturbance upper bound estimation and overcoming the effects of delay variability. A practical example of the innovative method is simulated in MATLAB environment and the obtained results confirm the optimal efficiency of the proposed synchronization method.https://www.tandfonline.com/doi/10.1080/21642583.2022.2040059Chaotic systemfractional orderdisturbancetime delaysynchronization
spellingShingle Hai Gu
Jianhua Sun
Hadi Imani
A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
Systems Science & Control Engineering
Chaotic system
fractional order
disturbance
time delay
synchronization
title A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
title_full A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
title_fullStr A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
title_full_unstemmed A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
title_short A robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time-varying delay
title_sort robust control scheme for synchronizing fractional order disturbed chaotic systems with uncertainty and time varying delay
topic Chaotic system
fractional order
disturbance
time delay
synchronization
url https://www.tandfonline.com/doi/10.1080/21642583.2022.2040059
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