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Hyper-Chaotic Color Image Encryption Based on Transformed Zigzag Diffusion and RNA Operation
Authors:Duzhong Zhang  Lexing Chen  Taiyong Li
Affiliation:School of Economic Information Engineering, Southwestern University of Finance and Economics, Chengdu 611130, China; (D.Z.); (L.C.)
Abstract:With increasing utilization of digital multimedia and the Internet, protection on this digital information from cracks has become a hot topic in the communication field. As a path for protecting digital visual information, image encryption plays a crucial role in modern society. In this paper, a novel six-dimensional (6D) hyper-chaotic encryption scheme with three-dimensional (3D) transformed Zigzag diffusion and RNA operation (HCZRNA) is proposed for color images. For this HCZRNA scheme, four phases are included. First, three pseudo-random matrices are generated from the 6D hyper-chaotic system. Second, plaintext color image would be permuted by using the first pseudo-random matrix to convert to an initial cipher image. Third, the initial cipher image is placed on cube for 3D transformed Zigzag diffusion using the second pseudo-random matrix. Finally, the diffused image is converted to RNA codons array and updated through RNA codons tables, which are generated by codons and the third pseudo-random matrix. After four phases, a cipher image is obtained, and the experimental results show that HCZRNA has high resistance against well-known attacks and it is superior to other schemes.
Keywords:hyper-chaotic   ribonucleic acid   color image encryption   transformed Zigzag
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