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A novel randomized bit-level two-dimensional hyperchaotic image encryption algorithm

机译:一种新型随机比特级二维超复态图像加密算法

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摘要

In this paper, we designed a new hyperchaotic two-dimensional map with wide distribution and two large positive Lyapunov exponents. Then, we used it to construct a new randomized bit-level chaotic image encryption algorithm with the proposed hyperchaotic map as the source of randomization for permutation and diffusion. The input image is randomized by appending an extra random row and an additional random column to it. Then, the whole permutation and diffusion process are randomized by relating the parameters of the hyperchaotic mapping dependent on the hash value of the randomized image. In the permutation step, the randomized image is split into binary images, and then each binary image is randomly and independently permuted. Then, the permuted binary images are combined, and diffusion is applied to each pixel. Various security experiments are designed to assess the performance of the proposed encryption algorithm, including entropy analysis, histogram analysis, key-space analysis, the pixel-level and the bit-level correlation analysis, and differential attacks as well as key-sensitivity and randomization analysis. According to these experiments, the proposed algorithm shows an excellent security performance compared to several recent image encryption algorithms. Moreover, the proposed encryption algorithm is robust against data loss and noise attacks. Finally, the running time of the proposed algorithm is smaller compared to several recent algorithms.
机译:在本文中,我们设计了一种具有广泛分布和两个大型Lyapunov指数的新型超谐波二维地图。然后,我们使用它来构造一种新的随机比特级混沌图像加密算法,其中具有所提出的超色映射映射作为排列和扩散的随机化源。通过将额外的随机行和额外的随机列附加到它来随机化输入图像。然后,通过依赖于随机图像的散列值的超声映射的参数来随机地随机化。在置换步骤中,随机图像被分成二进制图像,然后是随机且独立置换的每个二进制图像。然后,组合允许的二进制图像,并将扩散施加到每个像素。各种安全实验旨在评估所提出的加密算法的性能,包括熵分析,直方图分析,关键空间分析,像素级和比特级相关分析以及差异攻击以及键灵敏度和随机化分析。根据这些实验,与几个图像加密算法相比,所提出的算法显示出优异的安全性能。此外,所提出的加密算法对数据丢失和噪声攻击具有稳健。最后,与几个最近的算法相比,所提出的算法的运行时间较小。

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