A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters

In this paper, we review the complicated (or complex) lag (or slack) synchronization (CLS) of coupled complex chaotic nonlinear structures with unknown parameters. In spite of its unusual properties, the significance of CLS is yet to be fully demonstrated in the literature. Using a Lyapunov function...

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Main Authors: Emad E. Mahmoud, Bushra H. AL-Harthi
Format: Article
Language:English
Published: Elsevier 2019-09-01
Series:Results in Physics
Online Access:http://www.sciencedirect.com/science/article/pii/S221137971930991X
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spelling doaj-3c98de6e51d44bb6b5f50ec59e62add82020-11-24T21:36:01ZengElsevierResults in Physics2211-37972019-09-0114A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parametersEmad E. Mahmoud0Bushra H. AL-Harthi1Department of Mathematics, Faculty of Science, Taif University, Taif 888, Saudi Arabia; Department of Mathematics, Faculty of Science, Sohag University, Sohag 82524, EgyptDepartment of Mathematics, College of Science, Bisha University, Bisha, Saudi ArabiaIn this paper, we review the complicated (or complex) lag (or slack) synchronization (CLS) of coupled complex chaotic nonlinear structures with unknown parameters. In spite of its unusual properties, the significance of CLS is yet to be fully demonstrated in the literature. Using a Lyapunov function, an adaptive (or versatile) controller is developed to synchronize coupled, generally unknown chaotic complex structures. This enables the uncertain parameters of the structures to be evaluated. The CLS of indistinguishable twin complex Lü structures is recognized as a simulation pattern. A number of results demonstrate the state characteristics, modulus errors, and phase errors for these chaotic attractors following the onset of CLS, thus verifying the theoretical derivations. CLS is an encouraging phenomenon, as the synchronization between the state characteristics of the principal structure and those of the slave structure enable excellent communication security. Numerical simulations of secure communications demonstrate the transmission of an encrypted message and an image signal. Keywords: Complex lag synchronization, Chaotic structures, Unknown, Secure communications, Lyapunov function, Complexhttp://www.sciencedirect.com/science/article/pii/S221137971930991X
collection DOAJ
language English
format Article
sources DOAJ
author Emad E. Mahmoud
Bushra H. AL-Harthi
spellingShingle Emad E. Mahmoud
Bushra H. AL-Harthi
A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
Results in Physics
author_facet Emad E. Mahmoud
Bushra H. AL-Harthi
author_sort Emad E. Mahmoud
title A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
title_short A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
title_full A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
title_fullStr A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
title_full_unstemmed A phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
title_sort phenomenal form of complex synchronization and chaotic masking communication between two identical chaotic complex nonlinear structures with unknown parameters
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2019-09-01
description In this paper, we review the complicated (or complex) lag (or slack) synchronization (CLS) of coupled complex chaotic nonlinear structures with unknown parameters. In spite of its unusual properties, the significance of CLS is yet to be fully demonstrated in the literature. Using a Lyapunov function, an adaptive (or versatile) controller is developed to synchronize coupled, generally unknown chaotic complex structures. This enables the uncertain parameters of the structures to be evaluated. The CLS of indistinguishable twin complex Lü structures is recognized as a simulation pattern. A number of results demonstrate the state characteristics, modulus errors, and phase errors for these chaotic attractors following the onset of CLS, thus verifying the theoretical derivations. CLS is an encouraging phenomenon, as the synchronization between the state characteristics of the principal structure and those of the slave structure enable excellent communication security. Numerical simulations of secure communications demonstrate the transmission of an encrypted message and an image signal. Keywords: Complex lag synchronization, Chaotic structures, Unknown, Secure communications, Lyapunov function, Complex
url http://www.sciencedirect.com/science/article/pii/S221137971930991X
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