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A secure symmetric image encryption based on linear geometry

机译:基于线性几何的安全对称图像加密

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Transmission of image as secret over unreliable communication media is the demanding need of the day. But some intrinsic features like bulk data size, correlation among pixels are not properly addressed by conventional encryption algorithms such as DES, Triple-DES, RSA etc. To address the deficiency of conventional encryption algorithms, we propose a symmetric encryption technique based on linear geometry. Though the basic idea is block ciphering (size of each block is 4 bytes), here we have introduced the fundamental concept of linear geometry for ciphering. The ciphered bytes are again shuffled among N positions (N is size of secret file in bytes). The scheme is basically combination of substitution as well as transposition techniques, which provides better protection for secret image. It may be mentioned that there is no change in size after encryption. The proposed image encryption algorithm is described in detail along with its security analysis, such as key sensitivity analysis, statistical analysis, and differential analysis. Comparisons in terms of correlation between the secret and encrypted images, number of pixels change rate and unified average changing intensity are also presented. The present algorithm has been tested using different images to establish that the technique is quite robust and has a great potential to meet the security needs for digital images.
机译:通过不可靠的通信媒体将图像传输为秘密是当天的苛刻需求。但是,一些内在的特征,如批量数据大小,传统加密算法(例如DES,Triple-DES,RSA等)未正确解决像素之间的相关性,以解决传统加密算法的缺陷,我们提出了一种基于线性几何的对称加密技术。虽然基本思想是块加密(每个块的大小为4字节),但在这里我们引入了用于加密线性几何的基本概念。加密字节再次在n个位置播放(n是字节中的秘密文件的大小)。该方案基本上是替换以及转换技术的组合,这为秘密图像提供了更好的保护。可以提到,加密之后没有大小的变化。该提出的图像加密算法有详细描述了其安全性分析,例如关键敏感性分析,统计分析和差异分析。还呈现了秘密和加密图像之间的相关性的比较,还呈现像素的数量变化率和统一的平均变化强度。使用不同的图像测试了本算法,以确定该技术非常强大,并且具有符合数字图像安全需求的巨大潜力。

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