A Novel Image Encryption Algorithm Based on a Fractional-Order Hyperchaotic System and DNA Computing

In the era of the Internet, image encryption plays an important role in information security. Chaotic systems and DNA operations have been proven to be powerful for image encryption. To further enhance the security of image, in this paper, we propose a novel algorithm that combines the fractional-or...

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Published inComplexity (New York, N.Y.) Vol. 2017; no. 2017; pp. 1 - 13
Main Authors Jing, Xin, Wu, Jiang, Yang, Minggao, Li, Taiyong
Format Journal Article
LanguageEnglish
Published Cairo, Egypt Hindawi Publishing Corporation 01.01.2017
Hindawi
John Wiley & Sons, Inc
Wiley
Subjects
Online AccessGet full text
ISSN1076-2787
1099-0526
1099-0526
DOI10.1155/2017/9010251

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Abstract In the era of the Internet, image encryption plays an important role in information security. Chaotic systems and DNA operations have been proven to be powerful for image encryption. To further enhance the security of image, in this paper, we propose a novel algorithm that combines the fractional-order hyperchaotic Lorenz system and DNA computing (FOHCLDNA) for image encryption. Specifically, the algorithm consists of four parts: firstly, we use a fractional-order hyperchaotic Lorenz system to generate a pseudorandom sequence that will be utilized during the whole encryption process; secondly, a simple but effective diffusion scheme is performed to spread the little change in one pixel to all the other pixels; thirdly, the plain image is encoded by DNA rules and corresponding DNA operations are performed; finally, global permutation and 2D and 3D permutation are performed on pixels, bits, and acid bases. The extensive experimental results on eight publicly available testing images demonstrate that the encryption algorithm can achieve state-of-the-art performance in terms of security and robustness when compared with some existing methods, showing that the FOHCLDNA is promising for image encryption.
AbstractList In the era of the Internet, image encryption plays an important role in information security. Chaotic systems and DNA operations have been proven to be powerful for image encryption. To further enhance the security of image, in this paper, we propose a novel algorithm that combines the fractional-order hyperchaotic Lorenz system and DNA computing (FOHCLDNA) for image encryption. Specifically, the algorithm consists of four parts: firstly, we use a fractional-order hyperchaotic Lorenz system to generate a pseudorandom sequence that will be utilized during the whole encryption process; secondly, a simple but effective diffusion scheme is performed to spread the little change in one pixel to all the other pixels; thirdly, the plain image is encoded by DNA rules and corresponding DNA operations are performed; finally, global permutation and 2D and 3D permutation are performed on pixels, bits, and acid bases. The extensive experimental results on eight publicly available testing images demonstrate that the encryption algorithm can achieve state-of-the-art performance in terms of security and robustness when compared with some existing methods, showing that the FOHCLDNA is promising for image encryption.
Audience Academic
Author Jing, Xin
Yang, Minggao
Li, Taiyong
Wu, Jiang
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ContentType Journal Article
Copyright Copyright © 2017 Taiyong Li et al.
COPYRIGHT 2017 John Wiley & Sons, Inc.
Copyright © 2017 Taiyong Li et al.; This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Snippet In the era of the Internet, image encryption plays an important role in information security. Chaotic systems and DNA operations have been proven to be...
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SubjectTerms Algorithms
Analysis
Chaos theory
Coding
Computation
Cybersecurity
Data encryption
Deoxyribonucleic acid
DNA
Encryption
Image enhancement
Image processing
Lorenz system
Molecular computing
Multimedia
Neural networks
Permutations
Pixels
Pseudorandom sequences
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Title A Novel Image Encryption Algorithm Based on a Fractional-Order Hyperchaotic System and DNA Computing
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