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Cryptanalysis of a chaotic image cipher based on plaintext-related permutation and lookup table

机译:基于明文相关排列和查找表的混沌图像密码分析

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In 2017, an efficient chaotic image cipher with dynamic lookup table driven by bit-level permutation strategy (ICDLT) was proposed (Hu et al. Nonlinear Dyn 87:1359-1375). The chaotic cipher adopts a plaintext-related image encryption mechanism as an efficient measure against chosen-plaintext/ciphertext attack. ICDLT is composed of four basic parts: inter-pixel permutation, sequential addition, intra-pixel permutation and diffusion processes, where two kinds of permutation are both related to the plaintext. Although ICDLT is built on complex nonlinear dynamics, we found that it is still vulnerable against chosen-plaintext attack and its individual sub-keys can be recovered using a divide-and-conquer strategy. Benefiting from the essential structure of ICDLT and the intrinsic properties of Latin square, the proposed attack requires only(8 center dot N2+256+nc center dot(2 center dot N-1))plain images, whereN2 is the size of the image andncis the number of cipher images that need to be cracked. Furthermore, we summarize a more general framework which is beneficial for cryptanalyzing a class of plaintext-related image ciphers. Finally, we propose an improved scheme based on the designed plaintext-related XOR encryption (PR-XOR) module to enhance the security of ICDLT. Theoretical analysis and experiments prove that the improved scheme not only maintains the excellent statistical performances of the original one, but also can resist various attacks.
机译:在2017年,提出了一种有效的混沌图像密码,其中具有由比特级排列策略(ICDLT)驱动的动态查找表(Hu等人。非线性DYN 87:1359-1375)。混沌密码采用明文相关的映像加密机制,作为针对选定 - 明文/密文攻击的有效度量。 ICDLT由四个基本部件组成:像素间置换,顺序添加,像素内置换和扩散过程,其中两种排列均与明文相关。虽然ICDLT建立在复杂的非线性动态上,但我们发现它仍然容易受到选择 - 明文攻击,并且可以使用鸿沟策略来恢复其各个子键。受益于ICDLT的基本结构和拉丁广场的内在特性,所提出的攻击仅需要(8中心点N2 + 256 + NC中心点(2中心点N-1))普通图像,Wheren2是图像的大小Andncis需要破解的密码图像的数量。此外,我们总结了一个更普遍的框架,这些框架是有益于加密的纯明文相关的图像密码。最后,我们提出了一种基于设计的明文相关的XOR加密(PR-XOR)模块的改进方案,以增强ICDLT的安全性。理论分析和实验证明,改进的方案不仅保持原始的优异统计表现,而且可以抵抗各种攻击。

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