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Chaotic Image Encryption Algorithm Based on Bit Permutation and Dynamic DNA Encoding

机译:基于比特置换和动态DNA编码的混沌图像加密算法

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摘要

With the help of the fact that chaos is sensitive to initial conditions and pseudorandomness, combined with the spatial configurations in the DNA molecule’s inherent and unique information processing ability, a novel image encryption algorithm based on bit permutation and dynamic DNA encoding is proposed here. The algorithm first uses Keccak to calculate the hash value for a given DNA sequence as the initial value of a chaotic map; second, it uses a chaotic sequence to scramble the image pixel locations, and the butterfly network is used to implement the bit permutation. Then, the image is coded into a DNA matrix dynamic, and an algebraic operation is performed with the DNA sequence to realize the substitution of the pixels, which further improves the security of the encryption. Finally, the confusion and diffusion properties of the algorithm are further enhanced by the operation of the DNA sequence and the ciphertext feedback. The results of the experiment and security analysis show that the algorithm not only has a large key space and strong sensitivity to the key but can also effectively resist attack operations such as statistical analysis and exhaustive analysis.
机译:借助于混沌对初始条件和伪随机敏感性敏感,结合DNA分子固有的固有和独特信息处理能力的空间配置,这里提出了一种基于比特置换和动态DNA编码的新型图像加密算法。该算法首先使用Keccak计算给定DNA序列的散列值作为混沌图的初始值;其次,它使用混沌序列来扰乱图像像素位置,并且蝴蝶网络用于实现比特置换。然后,将图像编码为DNA矩阵动态,并且使用DNA序列进行代数操作以实现像素的替换,这进一步提高了加密的安全性。最后,通过DNA序列的操作和密文反馈的操作进一步增强了算法的混淆和扩散特性。实验和安全分析的结果表明,该算法不仅具有大的关键空间和对钥匙的强敏感性,而且还可以有效地抵抗诸如统计分析和详尽分析的攻击操作。

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