Sajid Khan, Hao Peng, Zhaoquan Gu, Sardar Usman, Namra Mukhtar
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引用次数: 0
摘要
本文提出了一种利用新型三维(3D)混沌图和增强逻辑正弦系统(ELSS)的稳健图像加密算法。我们利用三维混沌动力学的不可预测性以及增强对数正弦系统和 DNA 序列的复杂性来构建一个强大的图像加密方案。首先,将图像像素从十进制转换为十六进制,并在一维像素阵列中进行排序,其中包含 RGB 图像三个通道的唯一序列。其次,将秘钥与该一维像素阵列中的值进行 XOR。第三,通过二进制右移操作对数值进行排序,并将其编码到 DNA 中。第四,使用新颖的混沌图进行加扰操作。最后,新颖的巨大密钥空间 ELSS 被用来执行高效的边界和跨境(B &CB )像素交换,进一步提高了拟议算法的加密质量。全面的安全性分析证明,所提出的算法对强大的已知和选择明文攻击以及其他流行的密码分析攻击(包括差分攻击和穷举密钥搜索攻击)具有显著的抵御能力。因此,该算法具有卓越的安全性和较低的计算成本,是卫星、多媒体和军事通信等各种平台实时安全图像通信的理想选择。
Integration of a novel 3D chaotic map with ELSS and novel cross-border pixel exchange strategy for secure image communication
This paper proposes a robust image encryption algorithm that utilizes a Novel three-dimensional (3D) Chaotic map and an Enhanced Logistic Sine System (ELSS). We leverage the unpredictability of 3D chaotic dynamics alongside the complexity of ELSS and DNA Sequence to forge a formidable image encryption scheme. Firstly, the image pixels are converted from decimal to hexadecimal notation and sorted in a 1D pixel array carrying a unique sequence of three channels of the RGB image. Secondly, the secret key is appended to XOR, the values with that 1-D pixels array. Thirdly, values are sorted by performing the binary right shift operation and encoded into DNA. Fourthly, a novel chaotic map is used to perform scrambling operations. Lastly, a novel enormous keyspace ELSS is used to perform efficient Border and Cross-Border (B &CB) pixel exchange, further enhancing the encryption quality of the proposed algorithm. Comprehensive security analysis proved that the proposed algorithm exhibits remarkable resilience against powerful known and chosen plaintext attacks and other prevalent cryptanalysis attacks, including differential attacks and exhaustive key search attacks. Henceforth, the proposed algorithm’s superior security and low computational cost make it an ideal choice for real-time secure image communication across various platforms, including satellite, multimedia, and military communications.
期刊介绍:
Complex & Intelligent Systems aims to provide a forum for presenting and discussing novel approaches, tools and techniques meant for attaining a cross-fertilization between the broad fields of complex systems, computational simulation, and intelligent analytics and visualization. The transdisciplinary research that the journal focuses on will expand the boundaries of our understanding by investigating the principles and processes that underlie many of the most profound problems facing society today.