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Algebra-chaos amalgam and DNA transform based multiple digital image encryption

机译:基于多个数字图像加密的代数 - 混沌汞合金和DNA变换

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This study suggests a novel color multiple image encryption technique using "Algebra-Chaos Amalgamated 256-length-12-bit random sequence" and DNA Transform. The proposed random sequence (S-box) has the property of occupying small computer memory space as regards to the existing S-boxes. Moreover, for simplicity and novelty, 1D sin chaotic map and 1D logistic map are mixed to generate a 1D mixed Chaotic map. Initially, a 12 x 12 (256-length-12-bit) S-box is designed by the unit elements of a chain ring, and then it is mixed with the 1-D mixed chaotic map that results triplets T-1,T-2 and T-3 of high random behavior. A multiple digital image encryption is performed by using the triplet for substitution-permutation along with DNA transform. The proposed image encryption technique enhances key-space size. Moreover, the experimental results show that the proposed technique of encryption for digital medium has extra ordinary resistance against the well-known attacks.
机译:本研究表明,使用“代数-Chaos合并256-长度-12位随机序列”和DNA变换,提出了一种新颖的多种图像加密技术。所提出的随机序列(S-Box)具有占用小型计算机内存空间的属性,如现有的S盒。此外,为简单起见和新颖性,将1d SIN混沌图和1D逻辑图混合以产生1D混合的混沌图。最初,由链环的单元元件设计了12×12(256长 - 12位)S盒,然后将其与结果三元组T-1,T的1-D混混沌映射混合-2和高随机行为的T-3。通过使用Trioll来执行多重数字图像加密,以便与DNA变换一起替换。所提出的图像加密技术增强了密钥空间大小。此外,实验结果表明,建议的数字介质加密技术对众所周知的攻击具有额外的普通抗性。

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