节点文献

量子混沌与折叠算法的图像加密系统

An image encryption scheme based on quantum chaos and folding algorithm

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 金聪刘会

【Author】 JIN Cong;LIU Hui;School of Computer,Central China Normal University;

【机构】 华中师范大学计算机学院

【摘要】 本文提出一种量子混沌与折叠算法相结合的图像加密系统。该系统的主要思想是通过量子混沌映射和二维Logistic映射分别进行Arnold变换,得到两个由伪随机数组成的与灰度图像大小相等的矩阵Q、E,然后利用这两个矩阵对图像分别进行以下操作:一是利用矩阵Q对图像从4个方向进行"折叠操作",二是使用前一个像素值与当前像素值进行异或,然后将异或得到的值加上E对应的值,以对当前像素值进行修改,从而达到图像扩散的效果,增加差分攻击的难度。利用MATLAB对测试图像进行模拟仿真分析,结果显示,经该加密系统加密后的图像,其水平、竖直和对角线方向像素值的相关性分别为0.001 006、0.000 152、0.000 789,信息熵H(s)=7.997 3。一系列的实验结果表明该加密系统具有很高的安全性和随机性。

【Abstract】 An image encryption system combining quantum chaos with folding algorithm was proposed.The main idea of the proposed algorithm is to make Arnold transform through quantum chaos map and 2D Logistic map respectively,to generate the matrix Qand the matrix E,and the two matrices were made of pseudo random numbers and identical to grayscale image.Then,such matrices were used for two operations on the image and to achieve image encryption,as follows:one was to achieve"folding operation"on image at four directions by application of matrix Qand another was to execute nonequivalence of the former pixel value and present pixel value,plus the values after nonequivalence with Ecorresponding value,so the modification of present pixel value was obtained and the effect of image diffusion was realized and the difficulty of the differential attack was increased.Simulation analysis on tested image was conducted by application of MATLAB and the results show that for images encrypted by such encryption system,the correlations of pixel value at horizontal,vertical and diagonal directions are 0.001 006,0.000 152 and 0.000 789 respectively,with entropy H(s)=7.997 3.The results of a series of tests show that the proposed encryption system has highly security and randomness.

【基金】 华中师范大学中央高校基本科研业务费项目资助(No.CCNU15GF007)
  • 【文献出处】 光学精密工程 ,Optics and Precision Engineering , 编辑部邮箱 ,2017年03期
  • 【分类号】TP391.41;TP309.7
  • 【被引频次】5
  • 【下载频次】233
节点文献中: 

本文链接的文献网络图示:

本文的引文网络