基于DNA异或运算结合混沌映射的图像加密

D. Alshibani, Samar A. Qassir
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引用次数: 4

摘要

一种现代的灰度图像加密方法依赖于两种技术:介绍了DNA异或运算和二维混沌映射。在预处理阶段,首先对普通灰度图像进行Arnold变换进行洗牌。然后,对洗牌后的灰度图像进行编码,得到DNA二维矩阵。接下来,分别使用Henon Map和Ikeda Map生成键,分别用于替换和置换过程。最后对得到的二维矩阵进行解码,得到加密后的图像。该方法可以获得良好的加密效果;具有非常低的相关性(相关性接近于零),并且获得了令人满意的接近8的熵值,密钥空间宽,对密钥的敏感性强,NPCR超过99%,UACI高达33%,并且具有抗穷尽攻击和统计攻击的能力,调查结果和安全性分析表明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image enciphering based on DNA Exclusive-OR operation union with chaotic maps
A modern method for gray image enciphering depends on two techniques which are; DNA Exclusive-OR operation and 2D Chaotic Map is introduced. In preprocessing level, Arnold Transform is first applied on plain gray image for shuffling. Then, a DNA 2D matrix is resulted from encoding the shuffled gray image. Next, each of Henon Map and Ikeda Map are employed in keys generation to be used in the substitution and permutation process, respectively. The last process is decoding the resulted 2D matrix, and the enciphered image is obtained. The introduced method can acquire fine enciphering effect; has very low correlation (correlation close to zero), as well attains satisfactory entropy value close to 8, a wide secret key's space, strong sensitivity to secret key was the NPCR over 99% and UACI up to 33%, and has the abilities of resisting exhaustive attack and statistic attack as the investigational outcome and security analysis showed.
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