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Cryptanalysis of a DNA-based image encryption scheme

机译:基于DNA的图像加密方案的密码分析

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Recently, an image encryption scheme using 2D Henon-Sine map and DNA coding approach is proposed. It adopts the permutation-diffusion architecture. The DNA random coding and exclusive OR is introduced for image diffusion, while image scrambling is implemented by pixel swapping operations. This paper reveals that this encryption scheme is not as secure as declared. Substitution boxes (s-boxes) are firstly employed to summarize the involved complicated DNA encryption operations, the whole encryption scheme is subsequently relaxed as an s-box-then-permutation cipher. Chosen-plaintext attack is feasible for recovering the equivalent secret elements of the s-boxes and permutation vector. The proposed concept of generalizing DNA encryption as s-box substitution is expected to be beneficial for security evaluation and theoretical design of DNA-based image encryption schemes in the future. (c) 2020 Elsevier Inc. All rights reserved.
机译:最近,提出了一种使用2D HENON-SINE地图和DNA编码方法的图像加密方案。 它采用置换扩散架构。 DNA随机编码和独占或被引入图像扩散,而图像加扰由像素交换操作实现。 本文揭示了这种加密方案并不像声明一样安全。 首先使用替换盒(S盒)来总结所涉及的复杂DNA加密操作,随后作为S型盒子置换密码放松整个加密方案。 选择 - 明文攻击是可行的,可恢复S盒和排列向量的等效秘密元素。 概括DNA加密的概念预计将有利于未来DNA的图像加密方案的安全评估和理论设计。 (c)2020 Elsevier Inc.保留所有权利。

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