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首页> 外文期刊>International journal of communications, network, and system sciences >Cryptanalysis of a Substitution-Permutation Network Using Gene Assembly in Ciliates
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Cryptanalysis of a Substitution-Permutation Network Using Gene Assembly in Ciliates

机译:利用纤毛虫中的基因装配对置换排列网络进行密码分析

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摘要

In this paper we provide a novel approach for breaking a significant class of block ciphers, the so-called SPN ciphers, using the process of gene assembly in ciliates. Our proposed scheme utilizes, for the first time, the Turing-powerful potential of gene assembly procedure of ciliated protozoa into the real world computations and has a fewer number of steps than the other proposed schemes to break a cipher. We elaborate notions of formal language theory based on AIR systems, which can be thought of as a modified version of intramolecular scheme to model the ciliate bio-operations, for construction of building blocks necessary for breaking the cipher, and based on these nature-inspired constructions which are as powerful as Turing machines, we propose a theoretical approach for breaking SPN ciphers. Then, we simulate our proposed plan for breaking these ciphers on a sample block cipher based on this structure. Our results show that the proposed scheme has 51.5 percent improvement over the best previously proposed nature-inspired scheme for breaking a cipher.
机译:在本文中,我们提供了一种利用纤毛虫中的基因组装过程来打破重要类别的分组密码(即所谓的SPN密码)的新颖方法。我们提出的方案首次利用了图灵强大的纤毛原生动物基因组装程序潜力,将其应用于现实世界中,并且比其他提议的方案破译密码的步骤少。我们详细阐述了基于AIR系统的形式语言理论的概念,可以将其视为分子内方案的修改版本,以模拟纤毛生物操作,构建破解密码所必需的构件并基于这些自然灵感与图灵机一样强大的结构,我们提出了一种打破SPN密码的理论方法。然后,基于这种结构,我们模拟了我们提出的在样本块密码上破解这些密码的计划。我们的结果表明,与先前提出的最佳自然启发式密码破解方案相比,该方案具有51.5%的改进。

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