Secure image encryption algorithm using chaos-based block permutation and weighted bit planes chain diffusion

Aiming at the problem of insufficient security of image encryption technology, a secure image encryption algorithm using chaos-based block permutation and weighted bit planes chain diffusion is proposed, which is based on a variant structure of classical permutation-diffusion. During the permutation...

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Bibliographic Details
Published iniScience Vol. 27; no. 1; p. 108610
Main Authors Wen, Heping, Lin, Yiting, Kang, Shenghao, Zhang, Xiangyu, Zou, Kun
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 19.01.2024
Elsevier
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Summary:Aiming at the problem of insufficient security of image encryption technology, a secure image encryption algorithm using chaos-based block permutation and weighted bit planes chain diffusion is proposed, which is based on a variant structure of classical permutation-diffusion. During the permutation phase, the encryption operations of dividing an image into sub-block, block scrambling, block rotation and block inversion, negative-positive transformation, color component shuffling are performed sequentially with chaotic sequences of plaintext association. In the chain diffusion stage, different encryption strategies are adopted for the high and low 4-bit planes according to the weight of image information. Theoretical analyses and empirical results substantiate that the algorithm conforms to the cryptographic requirements of confusion, diffusion, and avalanche effects, while possessing excellent numerical statistical properties with a large cryptographic space. Therefore, the cryptanalysis-propelled security enhancement mechanism proposed in this paper effectively amplifies the aptitude of the algorithm to withstand cryptographic attacks. [Display omitted] •The proposed encryption algorithm can effectively resist the chosen-plaintext attack•Bit level is used as the basic unit of image encryption to ensure higher level of security•Chaos-based dynamic block permutation achieves good confusion with low complexity•The receiver can decrypt the message without transmitting additional plaintext related keys Physics; Quantum theory
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ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2023.108610