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A novel chaos-based approach in conjunction with MR-SVD and pairing function for generating visually meaningful cipher images

机译:基于CHAOS的基于混沌的方法和用于在视觉上有意义的密码图像中产生的配对功能

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摘要

For secure transmission of digital images, existing cryptographic algorithms transform images into a noise-like appearance. One obvious inference that an adversary could draw is that the noise-like texture is a cipher, prompting to apply classical cryptanalysis. This article proposes an efficient algorithm that produces a visually coherent and meaningful cipher image to bypass the cryptanalysis. In the partial-encryption phase, the Arnold-3D map drives the permutation mechanism, whereas the implementation of the diffusion phase is done by harnessing the iterates of the chaotic Logistic map. The partial cipher is compressed using a Cantor-like pairing function that does a 4 to 1 pixel encoding to facilitate embedding. The embedding phase is implemented in the spatial domain by applying Multi-resolution singular value decomposition on the reference image and replacing the vertical, horizontal, diagonal sub-band with the encoded cipher. The encoding of pixels facilitates the transmission of the visually meaningful cipher image to be of the same size as the original image rather than four-times the original image as reported in earlier schemes. Simulation results confirm the security of the scheme.
机译:为了安全传输数字图像,现有加密算法将图像变为噪声状外观。对手可以绘制的一个明显推断是噪声状纹理是密码,提示应用古典密码分析。本文提出了一种有效的算法,它产生了视觉上相干和有意义的密码图像来绕过密码分析。在部分加密阶段,Arnold-3D地图驱动置换机制,而通过利用混沌逻辑图的迭代来完成扩散阶段的实现。使用漫画配对功能压缩部分密码,该配对功能是4至1像素编码以便于嵌入。通过在参考图像上应用多分辨率奇异值分解并用编码的密码替换垂直,水平的对角线带替换垂直,水平的对角子带来实现嵌入阶段。像素的编码便于将视觉上有意义的密码图像的传输与原始图像的相同大小相同,而不是在早期方案中报告的原始图像的四倍。仿真结果证实了该方案的安全性。

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