An Efficient Image Encryption Algorithm Based on Hyperchaotic and Two Times of Scrambling Diffusion

Wei Bu, Shu-cui Xie
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Abstract

An image encryption algorithm based on hyperchaotic system is proposed to satisfy the security of image information transmission, the encryption algorithm consists of two times of scrambling and diffusion. The relation between plaintext and key is constructed to generate plaintext related chaotic sequence. Two rounds of scrambling operation are performed to make the pixel positions of the image are sufficiently scrambled, and two-way diffusion is carried out after scrambling, in this way, the value of any one pixel can affect other pixel values as much as possible. The information entropy, histogram distribution, adjacent pixel correlation, plaintext sensitivity, key sensitivity and key space are analyzed. As show by simulation results, our algorithm has good encryption effect and high security.
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基于超混沌和二次置乱扩散的高效图像加密算法
为了满足图像信息传输的安全性,提出了一种基于超混沌系统的图像加密算法,该算法包括两次置乱和两次扩散。构造明文与密钥的关系,生成与明文相关的混沌序列。进行两轮置乱操作,使图像的像素位置得到充分置乱,置乱后进行双向扩散,使任意一个像素的值尽可能地影响其他像素的值。分析了信息熵、直方图分布、相邻像素相关性、明文灵敏度、密钥灵敏度和密钥空间。仿真结果表明,该算法具有良好的加密效果和较高的安全性。
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