用于图像加密的二维切比雪夫正弦映射

Y. Zhong, Huayi Liu, Rushi Lan, Ting Wang, Xiyan Sun, Xiaonan Luo
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引用次数: 7

摘要

混沌系统具有对初始条件和系统参数极其敏感、遍历性强、不可预测等特点,被广泛应用于图像加密领域。本文提出了一种将混沌理论与图像加密相结合的新方案——二维切比雪夫正弦映射。通过对轨迹等高线映射和其他混沌映射的分析,该方法具有广泛的混沌范围和良好的遍历性。并且对初始条件和系统参数敏感,成本相对较低。在此基础上,提出了一种线性混合层图像加密算法。该算法采用行移和列混合来改变像素空间位置和像素频域,并应用了中国剩余定理的扩散原理。仿真和分析结果表明,该加密算法具有时间效率低、安全性较高、抗差分攻击和抗选择性明文攻击的性能。
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2D Chebyshev-Sine Map for Image Encryption
Chaotic systems are extremely sensitive to initial conditions and system parameters, ergodicity, unpredictable, which are applied to the field of image encryption widely. This paper proposes a new scheme of combining chaos theory and image encryption–2D Chebyshev-Sine map. Through the analysis of the trajectory contours mapping and other chaos mappings, the method has a wide range of chaos and good ergodicity. And it is sensitive to initial conditions and system parameters, which cost relatively low. On this basis, a linear mixed layer image encryption algorithm is proposed. In this algorithm, row shift and column mixing are used to change the pixel space position and pixel frequency domain, And the diffusion principle of Chinese remainder theorem is applied. The results of simulation and analysis show that this encryption algorithm has low time efficiency, relatively high security, resistance to differential attack and performance against selective plaintext attack.
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