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Cryptanalysis of a chaotic image encryption scheme based on permutation-diffusion structure

机译:基于置换扩散结构的混沌图像加密方案的密码分析

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Chaos-based image encryption algorithms have been widely studied since the permutation-diffusion structure (PDS) was proposed. However, the PDS is not secure from attacks, which may lead to security vulnerabilities of PDS based chaotic cryptosystems. In this study, the security problems of PDS are investigated. Then, a new PDS based chaotic image encryption scheme is cryptanalyzed. In the original scheme, a 3D bit matrix permutation was used to address the intrinsic deficiencies of traditional pixel/bit level permutation of image encryption. The double random position permutation provides a high security level. However, it is not unattackable. In this study, a novel attack method will be introduced where all the chaotic mappings or parameters which are functionally equivalent to the keys used in the permutation and diffusion stages of the original cryptosystem can fully be revealed. The encrypted images can then be completely recovered without knowing the secret keys. Both mathematical analysis and experimental results are given to illustrate the effectiveness of the proposed method. (C) 2018 Elsevier B.V. All rights reserved.
机译:基于混沌的图像加密算法已被广泛研究,因为提出了置换扩散结构(PDS)。但是,PDS不受攻击中的安全性,这可能导致基于PDS的混沌密码系统的安全漏洞。在这项研究中,研究了PD的安全问题。然后,密码分析新的基于PDS的混沌图像加密方案。在原始方案中,3D比特矩阵置换用于解决图像加密的传统像素/比特级别置换的内在缺陷。双随机位置置换提供高安全级别。但是,它不是不可或缺的。在本研究中,将引入一种新的攻击方法,其中可以充分地揭示与在原始密码系统的置换和扩散阶段中使用的键上使用的所有混沌映射或参数。然后可以在不知道秘密密钥的情况下完全恢复加密的图像。给出了数学分析和实验结果来说明所提出的方法的有效性。 (c)2018 Elsevier B.v.保留所有权利。

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