新型 4D 超混沌系统在图像加密中的应用

IF 2 4区 物理与天体物理 Q3 OPTICS
Heming Xu and Jian Wang
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引用次数: 0

摘要

为了保护敏感信息在网络传输、存储和处理过程中免受未经授权的访问和非法复制,我们提出了一种新的四维超混沌系统(4DHS),并将其应用于加密算法。首先,根据结构分析了四维超混沌系统的动力学特性,并通过耗散、平衡点和莱普诺夫指数验证了其混沌特性。其次,采用混沌序列结合阿诺德加扰方法对明文图像的像素值进行加扰,并通过XOR运算将加扰后的像素矩阵扩散到密文图像矩阵中。最后,我们通过实验验证了所提加密算法的有效性,并取得了令人满意的结果。同时,我们将所提出的加密算法与其他加密算法进行了比较,可以证明我们的加密算法具有出色的加密效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New 4D hyperchaotic system’s application in image encryption
In order to protect sensitive information from unauthorized access and illegal copy during network transmission, storage and processing, we propose a new four-dimensional hyperchaotic system (4DHS) and apply it to encryption algorithm. Firstly, the dynamical properties of 4DHS are analyzed according to the structure, and the chaotic properties are verified by dissipation, equilibrium point and lyapunov exponent. Secondly, the chaotic sequence combined with Arnold scrambling method is adopted to scramble the pixel values of the plaintext image, and the scrambled pixel matrix is diffused into the ciphertext image matrix by XOR operation. Finally, we conduct the experiments to validate the effectiveness of the proposed encryption algorithm and achieve satisfactory results. At the same time, we compare the proposed encryption algorithm with other encryption algorithms, and the excellent encryption effect of our encryption algorithm can be proved.
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来源期刊
CiteScore
4.50
自引率
4.80%
发文量
237
审稿时长
1.9 months
期刊介绍: Journal of Optics publishes new experimental and theoretical research across all areas of pure and applied optics, both modern and classical. Research areas are categorised as: Nanophotonics and plasmonics Metamaterials and structured photonic materials Quantum photonics Biophotonics Light-matter interactions Nonlinear and ultrafast optics Propagation, diffraction and scattering Optical communication Integrated optics Photovoltaics and energy harvesting We discourage incremental advances, purely numerical simulations without any validation, or research without a strong optics advance, e.g. computer algorithms applied to optical and imaging processes, equipment designs or material fabrication.
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