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An image cryptosystem based on pseudorandomly enhanced chaotic DNA and random permutation

机译:基于伪随机增强混沌DNA和随机排列的图像密码系统

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摘要

We propose an image encryption scheme based on pseudorandomly enhanced logistic map, random permutation and deoxyribonucleic acid coding in this paper. The scheme consists of two main phases: permutation and diffusion. Firstly, a random pixel permutation phase is carried out by a random permutation function to enhance the diffusion and statistical performance. Secondly, a DNA-based diffusion is performed via randomly selected DNA algebraic operations between the randomly permuted image matrix and a chaotic key matrix to produce the cipher image. Pseudorandomly enhanced logistic map is used to produce the key matrix while the direct logistic map is used to select DNA encoding/decoding rules and DNA algebraic operations. The chaos maps are driven by a SHA-256 hash value of the plain image. Experimental results based on several analyses including statistical, differential, key analyses, etc. show that the proposed scheme achieves robust encryption and provides sufficient resistance to various forms of attacks.
机译:本文提出了一种基于伪随机增强逻辑映射,随机排列和脱氧核糖核酸编码的图像加密方案。该方案包括两个主要阶段:排列和扩散。首先,通过随机置换函数执行随机像素置换阶段,以增强扩散和统计性能。其次,通过在随机排列的图像矩阵和混沌密钥矩阵之间随机选择的DNA代数运算执行基于DNA的扩散,以生成密码图像。伪随机增强逻辑图用于生成密钥矩阵,而直接逻辑图用于选择DNA编码/解码规则和DNA代数运算。混沌图由纯图像的SHA-256哈希值驱动。基于统计,差分,密钥分析等多种分析的实验结果表明,所提出的方案可实现鲁棒的加密,并对各种形式的攻击提供足够的抵抗力。

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