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A Reconfigurable-Permutation Algorithm for M_S-Box

机译:用于M_S框的可重构 - 置换算法

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The developments of differential and linear cryptanalysis methods were capable to breach the security of the DES cipher. Accordingly, the National Institute of Standards and Technology (NIST) issued a new standard named Advanced Encryption Standard (AES) which had SPN (Substitution Permutation Network) structure as a new next generation code standard method as a replacement for DES. However, this method has also found a hole in the security level of the AES, especially in the AES's S-box. This paper proposes a new mutable nonlinear transformation algorithm for AES S-box to enhance the complexity of the S-Box's structure called M_S-box that effectively provides an optimal degree of resistance against differential cryptanalysis and especially the linear cryptanalysis. The structure of the AES S-box has been expanded and modified to be congruent with the proposed algorithm and to obtain good nonlinearity of the S-box. The Cryptanalysis of the model is based on the maximum average differential probability (MADP) and maximum average linear hull probability (MALHP). The results show that proposed model significantly improves MADP and MALHP Furthermore, the results that have been obtained exhibit good enough confusions to achieve high security level.
机译:差分和线性密码分析方法的发展能够违反DES密码的安全性。因此,国家标准和技术研究所(NIST)发布了一个名为Advanced加密标准(AES)的新标准,其具有SPN(替换排列网络)结构作为新的下一代代码标准方法作为DES的替代品。然而,这种方法也在AES的安全水平中找到了一个洞,尤其是在AES的S盒中。本文提出了一种新的可变非线性转换算法,用于AES S盒,增强S盒结构的复杂性,称为M_S-盒的结构,有效地提供了对差分密码分析的最佳阻力,尤其是线性密码分析。 AES S盒的结构已经扩展和修改,以与所提出的算法一致并获得S盒的良好非线性。该模型的密码分析基于最大的平均差分概率(MADP)和最大平均线性船体概率(MALHP)。结果表明,拟议的模型此外,已经提高了MADP和MALHP,所以已经获得的结果表现出足够的混淆来实现高安全水平。

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