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Image encryption scheme based on a novel fractional order compound chaotic attractor

机译:基于新颖分数复合混沌吸引子的图像加密方案

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摘要

Many image encryption algorithms have too small key space to prevent exhaust attacks. Based on a novel compound chaotic system, an algorithm with expanded key space is proposed to aim at the problem. Firstly, an adaptive method is provided to design switching controllers during creating a novel compound chaos. Secondly, general Arnold transform is used to realise pixel scrambling technology. Finally, the novel fractional compound chaos is applied in pixel diffusion to improve security of the image encryption algorithm. In numerical simulation, classical colour image, gray image, binary image and non-square image are encrypted sufficiently to identify the encryption algorithm. Both theoretical analysis and experimental results show that the algorithm has larger key space and is suitable for different types of digital images, and encryption image can resist some kinds of external attacks.
机译:许多图像加密算法具有太小的关键空间,以防止排气攻击。基于一种新型化合物混沌系统,提出了一种具有扩展关键空间的算法来瞄准问题。首先,在创建新化合物混沌期间提供自适应方法以设计开关控制器。其次,普通Arnold变换用于实现像素扰扰技术。最后,将新颖的分数化合物混沌应用于像素扩散以提高图像加密算法的安全性。在数值模拟中,古典彩色图像,灰度图像,二值图像和非方形图像充分加密以识别加密算法。理论分析和实验结果都表明,该算法具有更大的关键空间,适用于不同类型的数字图像,加密图像可以抵抗某些类型的外部攻击。

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