基于新型膜超混沌系统、DNA 编码和哈希函数混合模型的图像加密算法

Zhenglong Chong;Cong Wang;Hongli Zhang;Ping Ma;Xinkai Li
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引用次数: 0

摘要

混沌图像加密算法的设计在提高信息和通信安全方面起着至关重要的作用。这类算法的性能与混沌序列和底层加密算法的复杂性密切相关。为了进一步提高超混沌系统的复杂性,本研究通过引入通量控制忆阻器模型,提出了五维(5D)忆阻器超混沌系统的新型构造。研究通过各种分析方法,包括相位描绘、分岔图和 Lyapunov 指数谱,对该系统的动态特性进行了研究。因此,超混沌系统产生的序列通过了美国国家标准与技术研究院(NIST)的测试,并被用于创建一种结合了哈希函数、脱氧核糖核酸(DNA)编码、逻辑和二维超混沌图(2D-SFHM)的新型图像加密技术。它提高了密钥和明文图像对图像加密的敏感性,扩展了算法密钥空间,增加了加密算法的复杂性。实验结果和分析验证了新算法的卓越加密能力。该算法的密钥空间高达 2512,密文图像的信息熵为 7.9994,像素间相关性趋近于零等,显示了该算法对不同类型图像攻击的抵御能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image Encryption Algorithm Based on a Hybrid Model of Novel Memristive Hyperchaotic Systems, DNA Coding, and Hash Functions
The design of a chaotic image encryption algorithm plays an essential role in enhancing information and communication security. The performance of such algorithms is intricately linked to the complexity of the chaotic sequence and the underlying encryption algorithm. To additionally enhance the complexity of hyperchaotic systems, this study presents a novel construction of a Five-Dimensional (5D) memristive hyperchaotic system through the introduction of the flux-controlled memristor model. The system's dynamic characteristics are examined through various analytical methods, including phase portraits, bifurcation diagrams, and Lyapunov exponent spectra. Accordingly, the sequences produced by the hyperchaotic system, which passed the National Institute of Standards and Technology (NIST) test, are employed to inform the creation of a novelty image encryption technique that combines hash function, Deoxyribonucleic Acid (DNA) encoding, logistic, and Two-Dimensional Hyperchaotic Map (2D-SFHM). It improves the sensitivity of key and plaintext images to image encryption, expands the algorithm key space, and increases the complexity of the encryption algorithm. Experimental findings and analysis validate the exceptional encryption capabilities of the novel algorithm. The algorithm exhibits a considerable key space 2 512 , and the ciphertext image demonstrates an information entropy of 7.9994, with inter-pixel correlation approaching zero, etc., showcasing its resilience against different types of attacks on images.
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CiteScore
7.80
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