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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A robust and secure chaotic standard map based pseudorandom permutation-substitution scheme for image encryption
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A robust and secure chaotic standard map based pseudorandom permutation-substitution scheme for image encryption

机译:基于鲁棒性和安全性的混沌标准图伪随机置换算法

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摘要

A novel and robust chaos-based pseudorandom permutation-substitution scheme for image encryption is proposed. It is a loss-less symmetric block cipher and specifically designed for the color images but may also be used for the gray scale images. A secret key of 161-bit, comprising of the initial conditions and system parameter of the chaotic map (the standard map), number of iterations and number of rounds, is used in the algorithm. The whole encryption process is the sequential execution of a preliminary permutation and a fix number of rounds (as specified in the secret key) of substitution and main permutation of the 2D matrix obtained from the 3D image matrix. To increase the speed of encryption all three processes: preliminary permutation, substitution and main permutation are done row-by-row and column-by-column instead of pixel-by-pixel. All the permutation processes are made dependent on the input image matrix and controlled through the pseudo random number sequences (PRNS) generated from the discretization of chaotic standard map which result in both key sensitivity and plaintext sensitivity. However each substitution process is initiated with the initial vectors (different for rows and columns) generated using the secret key and chaotic standard map and then the properties of rows and column pixels of input matrix are mixed with the PRNS generated from the standard map. The security and performance analysis of the proposed image encryption has been performed using the histograms, correlation coefficients, information entropy, key sensitivity analysis, differential analysis, key space analysis, encryption/decryption rate analysis etc. Results suggest that the proposed image encryption technique is robust and secure and can be used for the secure image and video communication applications.
机译:提出了一种新颖且鲁棒的基于混沌的伪随机置换算法来进行图像加密。它是一种无损对称块密码,专门为彩色图像而设计,但也可以用于灰度图像。该算法使用了161位的秘密密钥,该密钥包括混沌映射的初始条件和系统参数(标准映射),迭代次数和回合次数。整个加密过程是依次执行从3D图像矩阵获得的2D矩阵的初步置换和固定轮数(如密钥指定)的替换和主置换。为了提高加密速度,这三个过程:初步置换,替换和主要置换是逐行,逐列而不是逐像素完成的。所有置换过程都取决于输入图像矩阵,并通过从混沌标准图离散化生成的伪随机数序列(PRNS)进行控制,从而导致键敏感度和明文敏感度。但是,每个替换过程都是从使用秘密密钥和混沌标准图生成的初始向量(行和列不同)开始的,然后将输入矩阵的行和列像素的属性与从标准图生成的PRNS混合。利用直方图,相关系数,信息熵,密钥敏感性分析,差分分析,密钥空间分析,加密/解密率分析等方法对图像加密技术进行了安全性和性能分析。结果表明,所提出的图像加密技术是坚固且安全,可用于安全的图像和视频通信应用。

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