Robust Image Encryption with 2D Hyperchaotic Map and Dynamic DNA-Zigzag Encoding.

IF 2.1 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Entropy Pub Date : 2025-06-06 DOI:10.3390/e27060606
Haijun Zhang, Xiaojiao Liu, Kehan Chen, Rigen Te, Fei Yan
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引用次数: 0

Abstract

This study presents a novel two-dimensional hyperchaotic map, referred to as the 2D exponent-logarithm-sine chaotic map (2D-ELSCM), which is intricately designed through the interplay of exponential, logarithmic, and sine functions. To comprehensively evaluate the chaotic performance of the 2D-ELSCM, several critical metrics are employed, including the largest Lyapunov exponent (LLE), permutation entropy (PE), sample entropy (SE), Kolmogorov entropy (KE), and the results of the 0-1 test, which yield values of 8.3175, 0.9998, 1.9826, 2.1117, and 0.9970, respectively. Furthermore, the 2D-ELSCM successfully passes the NIST randomness tests, collectively confirming its exceptional randomness and complexity. Building upon this robust chaotic map, we develop a distinctive chaotic image encryption scheme that employs an improved Knuth-Durstenfeld shuffle (IKDS) to rearrange pixel positions, effectively disrupting the correlation between adjacent pixels. Complementing this, we introduce a dynamic diffusion mechanism that integrates DNA encoding with the Zigzag transform, thereby promoting global pixel diffusion and enhancing encryption security. The initial conditions of the chaotic map are generated from the SHA-512 hash of the plaintext image in conjunction with an external key, which not only expands the key space but also significantly improves key sensitivity. Simulation results demonstrate that the proposed encryption scheme achieves correlation coefficients approaching 0 in the encrypted test images, with an average NPCR of 99.6090% and UACI of 33.4707%. These findings indicate a strong resistance to various attacks and showcase excellent encryption quality, thereby underscoring the scheme's potential for secure image transmission and storage.

二维超混沌映射和动态dna之字形编码鲁棒图像加密。
本研究提出了一种新的二维超混沌映射,称为二维指数-对数-正弦混沌映射(2D- elscm),它是通过指数、对数和正弦函数的相互作用而复杂设计的。为了综合评价2D-ELSCM的混沌性能,采用了几个关键指标,包括最大Lyapunov指数(LLE)、排列熵(PE)、样本熵(SE)、Kolmogorov熵(KE)和0-1检验结果,产率分别为8.3175、0.9998、1.9826、2.1117和0.9970。此外,2D-ELSCM成功通过了NIST的随机性测试,共同证实了其特殊的随机性和复杂性。基于这种鲁棒混沌映射,我们开发了一种独特的混沌图像加密方案,该方案采用改进的Knuth-Durstenfeld洗牌(IKDS)来重新排列像素位置,有效地破坏相邻像素之间的相关性。作为补充,我们引入了一种动态扩散机制,将DNA编码与之字形变换相结合,从而促进了全局像素扩散,增强了加密安全性。混沌映射的初始条件是由明文图像的SHA-512哈希与外部密钥一起生成的,不仅扩展了密钥空间,而且显著提高了密钥灵敏度。仿真结果表明,所提出的加密方案在加密后的测试图像中相关系数接近0,平均NPCR为99.6090%,UACI为33.4707%。这些发现表明该方案对各种攻击具有很强的抵抗力,并展示了出色的加密质量,从而强调了该方案在安全图像传输和存储方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Entropy
Entropy PHYSICS, MULTIDISCIPLINARY-
CiteScore
4.90
自引率
11.10%
发文量
1580
审稿时长
21.05 days
期刊介绍: Entropy (ISSN 1099-4300), an international and interdisciplinary journal of entropy and information studies, publishes reviews, regular research papers and short notes. Our aim is to encourage scientists to publish as much as possible their theoretical and experimental details. There is no restriction on the length of the papers. If there are computation and the experiment, the details must be provided so that the results can be reproduced.
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