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Image Encryption Algorithm Based on the H-Fractal and Dynamic Self-Invertible Matrix

机译:基于H形和动态自逆矩阵的图像加密算法

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摘要

In this paper, an image encryption algorithm based on the H-fractal and dynamic self-invertible matrix is proposed. The H-fractal diffusion encryption method is firstly used in this encryption algorithm. This method crosses the pixels at both ends of the H-fractal, and it can enrich the means of pixel diffusion. The encryption algorithm we propose uses the Lorenz hyperchaotic system to generate pseudorandom sequences for pixel location scrambling and self-invertible matrix construction to scramble and diffuse images. To link the cipher image with the original image, the initial values of the Lorenz hyperchaotic system are determined using the original image, and it can enhance the security of the encryption algorithm. The security analysis shows that this algorithm is easy to implement. It has a large key space and strong key sensitivity and can effectively resist plaintext attacks.
机译:提出了一种基于H分形和动态自反转矩阵的图像加密算法。该加密算法中首先使用了H分形扩散加密方法。这种方法使H形分形两端的像素交叉,可以丰富像素扩散的方式。我们提出的加密算法使用Lorenz超混沌系统来生成伪随机序列,以进行像素位置加扰和自反转矩阵构造来加扰和扩散图像。为了将密码图像与原始图像链接,使用原始图像确定Lorenz超混沌系统的初始值,这可以增强加密算法的安全性。安全分析表明该算法易于实现。具有较大的密钥空间和较强的密钥敏感性,可以有效抵抗明文攻击。

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