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Research Article | Open Access

Comparison principle and synchronization analysis of fractional-order complex networks with parameter uncertainties and multiple time delays

Hongguang Fan1( )Jihong Zhu2Hui Wen3( )
College of Computer, Chengdu University, Chengdu 610106, China
Jiangxi Environmental Engineering Vocational College, Ganzhou, Jiangxi 341000, China
Institute of New Engineering Industry, Putian University, Putian 351100, China
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Abstract

This paper investigates the global synchronization problems of fractional-order complex dynamical networks with uncertain inner coupling and multiple time delays. In particular, both internal time delays and coupling time delays are introduced into our model. To overcome the difficulties caused by various delays and uncertainties, a generalized delayed comparison principle with fractional-order and impulsive effects is established by using the Laplace transform. Based on the Lyapunov stability theory and mixed impulsive control technologies, some new synchronization criteria for concerned complex dynamical networks are derived. In addition, the synchronization criteria are related to the impulsive interval, network topology structure, fractional-order, and control gains. The theoretical results obtained in this paper can enhance the value of previous related works. Finally, numerical simulations are presented to show the correctness of our main results.

CLC number: 26A33

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AIMS Mathematics
Pages 12981-12999

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Cite this article:
Fan H, Zhu J, Wen H. Comparison principle and synchronization analysis of fractional-order complex networks with parameter uncertainties and multiple time delays. AIMS Mathematics, 2022, 7(7): 12981-12999. https://doi.org/10.3934/math.2022719

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Received: 16 March 2022
Revised: 15 April 2022
Accepted: 18 April 2022
Published: 15 July 2022
©2022 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)