An image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions

In this paper, we propose a novel image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions. The significant advantage of the proposed scheme is high efficiency. The proposed scheme consists of the DNA level permutation and diffusion. In the DNA level permu...

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Published inMultimedia tools and applications Vol. 79; no. 33-34; pp. 24993 - 25022
Main Author Zefreh, Ebrahim Zarei
Format Journal Article
LanguageEnglish
Published New York Springer US 01.09.2020
Springer Nature B.V
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Abstract In this paper, we propose a novel image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions. The significant advantage of the proposed scheme is high efficiency. The proposed scheme consists of the DNA level permutation and diffusion. In the DNA level permutation, a mapping function based on the logistic map is applied on the DNA image to randomly change the position of elements in the DNA image. In the DNA level diffusion, not only we define two new algebraic DNA operators, called the DNA left-circular shift and DNA right-circular shift, but we also use a variety of DNA operators to diffuse the permutated DNA image with the key DNA image. The experimental results and security analyses indicate that the proposed image encryption scheme not only has good encryption effect and able to resist against the known attacks, but also is sufficiently fast for practical applications. The MATLAB source code of the proposed image encryption scheme is publicly available at the URL: https://github.com/EbrahimZarei64/ImageEncryption .
AbstractList In this paper, we propose a novel image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions. The significant advantage of the proposed scheme is high efficiency. The proposed scheme consists of the DNA level permutation and diffusion. In the DNA level permutation, a mapping function based on the logistic map is applied on the DNA image to randomly change the position of elements in the DNA image. In the DNA level diffusion, not only we define two new algebraic DNA operators, called the DNA left-circular shift and DNA right-circular shift, but we also use a variety of DNA operators to diffuse the permutated DNA image with the key DNA image. The experimental results and security analyses indicate that the proposed image encryption scheme not only has good encryption effect and able to resist against the known attacks, but also is sufficiently fast for practical applications. The MATLAB source code of the proposed image encryption scheme is publicly available at the URL: https://github.com/EbrahimZarei64/ImageEncryption .
In this paper, we propose a novel image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions. The significant advantage of the proposed scheme is high efficiency. The proposed scheme consists of the DNA level permutation and diffusion. In the DNA level permutation, a mapping function based on the logistic map is applied on the DNA image to randomly change the position of elements in the DNA image. In the DNA level diffusion, not only we define two new algebraic DNA operators, called the DNA left-circular shift and DNA right-circular shift, but we also use a variety of DNA operators to diffuse the permutated DNA image with the key DNA image. The experimental results and security analyses indicate that the proposed image encryption scheme not only has good encryption effect and able to resist against the known attacks, but also is sufficiently fast for practical applications. The MATLAB source code of the proposed image encryption scheme is publicly available at the URL: https://github.com/EbrahimZarei64/ImageEncryption.
Author Zefreh, Ebrahim Zarei
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  givenname: Ebrahim Zarei
  orcidid: 0000-0002-8318-7485
  surname: Zefreh
  fullname: Zefreh, Ebrahim Zarei
  email: zarei@khansar-cmc.ac.ir
  organization: Department of Computer Science, University of Khansar
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Issue 33-34
Keywords Image encryption
DNA circular shift
Hash function
Chaotic system
DNA computing
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Snippet In this paper, we propose a novel image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions. The significant...
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crossref
springer
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StartPage 24993
SubjectTerms Chaos theory
Computation
Computer Communication Networks
Computer Science
Data Structures and Information Theory
Deoxyribonucleic acid
DNA
Encryption
Mapping
Multimedia Information Systems
Operators (mathematics)
Permutations
Source code
Special Purpose and Application-Based Systems
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Title An image encryption scheme based on a hybrid model of DNA computing, chaotic systems and hash functions
URI https://link.springer.com/article/10.1007/s11042-020-09111-1
https://www.proquest.com/docview/2435937600
Volume 79
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