On active synchronization of fractional-order Bloch chaotic system and its practical application in secure image transmission

Purpose The purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic systems. Design/methodology/approach The proposed approach includes two main contributions: synchronization scheme and transmission scheme. The synchronization sch...

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Published inInternational journal of intelligent computing and cybernetics Vol. 11; no. 2; pp. 181 - 196
Main Authors Tirandaz, Hamed, Karami-Mollaee, Ali
Format Journal Article
LanguageEnglish
Published Bingley Emerald Publishing Limited 11.06.2018
Emerald Group Publishing Limited
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ISSN1756-378X
1756-3798
DOI10.1108/IJICC-05-2017-0048

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Abstract Purpose The purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic systems. Design/methodology/approach The proposed approach includes two main contributions: synchronization scheme and transmission scheme. The synchronization scheme benefits the advantage of the fractional-order active synchronization method. A new control law is derived to asymptotically synchronize the underlined fractional-order Bloch chaotic system. The validity of the proposed synchronization scheme is proved by the Lyapunov stability theorem. Then, a novel image transmission scheme is designed to transfer image data via chaotic signals, which modulates the encrypted data in the sender signals and demodulates it at the receiver side. Findings Numerical simulations are provided to show the validity and effectiveness of the proposed image transmission system. Furthermore, the performance of the image transmission system is evaluated using some illustrative examples and their corresponding statistical tests. The results demonstrate the effectiveness of the proposed method in comparison with other proposed methods in this subject. Originality/value A new chaos-based image transmission system is developed based on the synchronization of Bloch chaotic system. The introduced transmission system is interesting and could be applicable to any kind of secure image/video transmission.
AbstractList Purpose The purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic systems. Design/methodology/approach The proposed approach includes two main contributions: synchronization scheme and transmission scheme. The synchronization scheme benefits the advantage of the fractional-order active synchronization method. A new control law is derived to asymptotically synchronize the underlined fractional-order Bloch chaotic system. The validity of the proposed synchronization scheme is proved by the Lyapunov stability theorem. Then, a novel image transmission scheme is designed to transfer image data via chaotic signals, which modulates the encrypted data in the sender signals and demodulates it at the receiver side. Findings Numerical simulations are provided to show the validity and effectiveness of the proposed image transmission system. Furthermore, the performance of the image transmission system is evaluated using some illustrative examples and their corresponding statistical tests. The results demonstrate the effectiveness of the proposed method in comparison with other proposed methods in this subject. Originality/value A new chaos-based image transmission system is developed based on the synchronization of Bloch chaotic system. The introduced transmission system is interesting and could be applicable to any kind of secure image/video transmission.
PurposeThe purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic systems.Design/methodology/approachThe proposed approach includes two main contributions: synchronization scheme and transmission scheme. The synchronization scheme benefits the advantage of the fractional-order active synchronization method. A new control law is derived to asymptotically synchronize the underlined fractional-order Bloch chaotic system. The validity of the proposed synchronization scheme is proved by the Lyapunov stability theorem. Then, a novel image transmission scheme is designed to transfer image data via chaotic signals, which modulates the encrypted data in the sender signals and demodulates it at the receiver side.FindingsNumerical simulations are provided to show the validity and effectiveness of the proposed image transmission system. Furthermore, the performance of the image transmission system is evaluated using some illustrative examples and their corresponding statistical tests. The results demonstrate the effectiveness of the proposed method in comparison with other proposed methods in this subject.Originality/valueA new chaos-based image transmission system is developed based on the synchronization of Bloch chaotic system. The introduced transmission system is interesting and could be applicable to any kind of secure image/video transmission.
Author Karami-Mollaee, Ali
Tirandaz, Hamed
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CitedBy_id crossref_primary_10_1016_j_chaos_2019_109462
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crossref_primary_10_1007_s40324_020_00238_7
crossref_primary_10_1016_j_chaos_2019_109459
crossref_primary_10_1016_j_chaos_2019_109410
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Issue 2
Keywords Secure communication
Active control
Fractional calculus
Bloch chaotic system
Image transmission system
Language English
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  article-title: Adaptive hybrid projective synchronization of two coupled fractional-order complex networks with different sizes
  publication-title: Neurocomputing
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Snippet Purpose The purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic systems....
PurposeThe purpose of this paper is to propose a novel and secure image transmission based on the unpredictable behavior of the chaotic...
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emerald
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StartPage 181
SubjectTerms Calculus
Chaos theory
Computer simulation
Cryptography
Data encryption
Data transfer (computers)
Data transmission
Digital signatures
Encryption
Entropy
Image transmission
Methods
Researchers
Statistical tests
Synchronism
Video transmission
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Title On active synchronization of fractional-order Bloch chaotic system and its practical application in secure image transmission
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https://www.proquest.com/docview/2046003861
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