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A Novel Color Image Encryption Algorithm Based on Hyperchaotic System and Permutation-Diffusion Architecture

机译:一种基于超谐波系统和置换扩散架构的新型彩色图像加密算法

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摘要

In recent years, scholars studied and proposed some secure color image encryption algorithms. However, the majority of the published algorithms encrypted red, green and blue (called R, G, B for short) components independently. In the paper, we propose a color image encryption scheme based on hyperchaotic system and permutation-diffusion architecture. The encryption algorithm utilizes a block permutation which is realized by mixing R, G, B components to strengthen the dependence of each component. Besides, it can reduce time consumption. Then, the key streams generated by the hyperchaotic system are exploited to diffuse the pixels, the three components affect each other again. And in the diffusion process, we can get two totally different encrypted images even though we change the last pixel because the G component is diffused in reverse order. The experimental results reveal that our algorithm possesses better abilities of resisting statistical attacks and differential attacks, larger key space, closer information entropy to 8, and faster encryption speed compared with other chaos-based color image encryption algorithms.
机译:近年来,学者研究并提出了一些安全的彩色图像加密算法。但是,大多数已发布的算法独立地加密了红色,绿色和蓝色(称为R,G,B为短)组件。在本文中,我们提出了一种基于超谐波系统和置换扩散架构的彩色图像加密方案。加密算法利用通过混合R,G,B分量来实现的块置换,以增强每个组件的依赖性。此外,它可以减少时间消耗。然后,利用超声系统生成的密钥流以扩散像素,三个组件再次相互影响。在扩散过程中,我们可以获得两个完全不同的加密图像,即使我们更改了最后一个像素,因为G组件以相反的顺序漫反射。实验结果表明,与其他基于混乱的彩色图像加密算法相比,我们的算法具有抵抗统计攻击和差异攻击,更大的关键空间,更接近的信息熵,更速度的加密速度。

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