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Journal ArticleDOI

Security analysis of an image encryption algorithm based on a DNA addition combining with chaotic maps

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TLDR
An encryption algorithm which combines a DNA addition and a chaotic map to encrypt a gray scale image is proposed, which is non-invertible, which means that the receiver cannot decrypt the ciphered image even if he posses the secret key.
Abstract
In this paper, we propose to cryptanalyse an encryption algorithm which combines a DNA addition and a chaotic map to encrypt a gray scale image. Our contribution consists on, at first, demonstrating that the algorithm, as it is described, is non-invertible, which means that the receiver cannot decrypt the ciphered image even if he posses the secret key. Then, a chosen plaintext attack on the invertible encryption block is described, where, the attacker can illegally decrypt the ciphered image by a temporary access to the encryption machinery.

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Citations
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Journal ArticleDOI

A novel image encryption scheme based on DNA sequence operations and chaotic systems

TL;DR: Experimental results and security analyses demonstrate that the proposed scheme not only has good encryption effect, but also is secure enough to resist against the known attacks.
Journal ArticleDOI

Color image DNA encryption using NCA map-based CML and one-time keys

TL;DR: Experimental results and security analysis show that the presented encryption algorithm has a good encryption effect and can resist various typical attacks.
Journal ArticleDOI

Chaos-based image encryption scheme combining DNA coding and entropy

TL;DR: A secure image encryption scheme based on logistic and spatiotemporal chaotic systems is proposed that can resistant different attacks, such as the brute-force attack, statistical attack and differential attack.
Journal ArticleDOI

An image encryption scheme combining chaos with cycle operation for DNA sequences

TL;DR: Simulation results demonstrate that the proposed image encryption scheme with acceptable robustness is secure against exhaustive attack, statistical attack and differential attack.
Journal ArticleDOI

Cryptanalyzing a RGB image encryption algorithm based on DNA encoding and chaos map

TL;DR: It is found that the encryption algorithm can be broken efficiently with only one known plain-image, and the effectiveness of the proposed known-plaintext attack is supported by both rigorous theoretical analysis and experimental results.
References
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Journal ArticleDOI

Communication theory of secrecy systems

TL;DR: A theory of secrecy systems is developed on a theoretical level and is intended to complement the treatment found in standard works on cryptography.
Journal ArticleDOI

Image encryption using DNA complementary rule and chaotic maps

TL;DR: Experimental results and security analysis show that the scheme can not only achieve good encryption result, but also the key space is large enough to resist against common attacks.
Journal ArticleDOI

A novel color image encryption algorithm based on DNA sequence operation and hyper-chaotic system

TL;DR: A new color image encryption algorithm based on DNA (Deoxyribonucleic acid) sequence addition operation is presented that not only has good encryption effect, but also has the ability of resisting exhaustive attack, statistical attack and differential attack.
Journal ArticleDOI

Image encryption using DNA addition combining with chaotic maps

TL;DR: A new image encryption scheme based on DNA sequence addition operation and chaos that not only can achieve good encryption, but can also resist exhaustive attack, statistical attack and differential attack.
Journal ArticleDOI

Cryptography with DNA binary strands

TL;DR: It is shown that DNA steganography based on DNA binary strands is secure under the assumption that an interceptor has the same technological capabilities as sender and receiver of encrypted messages.
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