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Image Encryption Based on Chaotic Sub-Block Scrambling and Chaotic Digit Selection Diffusion

机译:基于混沌子块加扰的图像加密和混沌数字选择扩散

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摘要

A novel chaotic image encryption method combining chaotic sub-block scrambling (CSBS) based on spiral transformation and chaotic digit selection diffusion (CDSD) is proposed in this article. First, we present an improved pixel scanning scrambling method with chaos, which causes positional changes of all pixel points in one encryption round so that the algorithm's time and space complexity are considerably reduced. Second, a novel diffusion method is proposed that uses two chaotic sequences to improve the efficiency of the diffusion process. The experimental analysis illustrates that the algorithm has a better encryption effect and higher key sensitivity, whether using conventional tests or the new tailoring palisade cropping attack described for the first time in this paper, and can also effectively resist exhaustive, statistical, and differential attacks.
机译:本文提出了一种基于螺旋变换和混沌数字选择扩散(CDSD)的混沌子块加扰(CSB)的新型混沌图像加密方法。首先,我们提出了一种具有混沌的改进的像素扫描扰扰方法,这导致一个加密圆中所有像素点的位置变化,使得算法的时间和空间复杂性显着降低。其次,提出了一种新的扩散方法,其使用两个混沌序列来提高扩散过程的效率。实验分析说明该算法具有更好的加密效果和更高的关键敏感性,无论是使用传统测试还是新的剪裁普拉沙德在本文中描述的新剪裁拍摄攻击,也可以有效地抵抗穷举,统计和差异攻击。

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