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

机译:一种基于DNA序列操作和混沌系统的新型图像加密方案

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摘要

In the paper, a novel image encryption algorithm based on DNA sequence operations and chaotic systems is proposed. The encryption architecture of permutation and diffusion is adopted. Firstly, 256-bit hash value of the plain image is gotten to calculate the initial values and system parameters of the 2D Logistic-adjusted-Sine map (2D-LASM) and a new 1D chaotic system; thus, the encryption scheme highly depends on the original image. Next, the chaotic sequences from 2D-LASM are used to produce the DNA encoding/decoding rule matrix, and the plain image is encoded into a DNA matrix according to it. Thirdly, DNA level row permutation and column permutation are performed on the DNA matrix of the original image, inter-DNA-plane permutation and intra-DNA-plane permutation can be attained simultaneously, and then, DNA XOR operation is performed on the permutated DNA matrix using a DNA key matrix, and the key matrix is produced by the combination of two 1D chaotic systems. Finally, after decoding the confused DNA matrix, the cipher image is obtained. 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.
机译:本文提出了一种基于DNA序列操作和混沌系统的新型图像加密算法。采用置换和扩散的加密架构。首先,将256位哈希值的普通图像进行计算,以计算2D逻辑调整的正弦图(2D-Lasm)和新的1D混沌系统的初始值和系统参数;因此,加密方案高度取决于原始图像。接下来,使用来自2D-Lasm的混沌序列来产生DNA编码/解码规则矩阵,并且根据其编码普通图像以DNA矩阵。第三,对原始图像的DNA矩阵执行DNA水平行置换和列置换,可以同时进行DNA平面置换和DNA-DNA-平面置换,然后在置换的DNA上进行DNA XOR操作使用DNA密钥矩阵的矩阵,并且通过两个1D混沌系统的组合产生密钥矩阵。最后,在解码混淆的DNA矩阵之后,获得密码图像。实验结果和安全分析表明,所提出的方案不仅具有良好的加密效果,而且足以抵抗已知攻击的安全性。

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