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Edge-based lightweight image encryption using chaos-based reversible hidden transform and multiple-order discrete fractional cosine transform

机译:使用基于混沌的可逆隐藏变换和多阶离散分数余弦变换进行基于边缘的轻量级图像加密

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摘要

In some special multimedia applications, only the regions with semantic information should be provided better protection whereas the other smooth regions can be free of encryption. However, most of the existing multimedia security schemes only consider bits and pixels rather than semantic information during their encryption. Motivated by this, we propose an edge-based lightweight image encryption scheme using chaos-based reversible hidden transform and multiple-order discrete fractional cosine transform. An image is first carried out by the edge detection based on advanced CNN structure with adaptive thresholds to assess data significance in the image. The detection output is a binary image, in which a "1" reflects the detected pixel whereas a "0" is opposite. Both the detected image and the original image are divided into non-overlapping pixel blocks in the same way, respectively. Whether each block is encrypted or not depends on the significance judged by the corresponding detected block. The significant block is performed by reversible hidden transform followed by multiple-order discrete fractional cosine transform parameters and orders of these two transforms are determined by a two dimensional cross chaotic map. Experiment results show the significant contour features of an image that have been largely hidden only by encrypting about half pixels in the average sense. The keys are extremely sensitive and the proposed scheme can resist noise attack to some extent.
机译:在某些特殊的多媒体应用中,仅应为具有语义信息的区域提供更好的保护,而其他平滑区域可以不进行加密。但是,大多数现有的多媒体安全方案在加密期间仅考虑位和像素,而不考虑语义信息。为此,我们提出了一种基于边缘的轻量级图像加密方案,该方案使用基于混沌的可逆隐藏变换和多阶离散分数余弦变换。首先通过基于具有自适应阈值的高级CNN结构的边缘检测来执行图像,以评估图像中的数据重要性。检测输出是二进制图像,其中“ 1”反映检测到的像素,而“ 0”则相反。将检测到的图像和原始图像两者分别以相同的方式划分为不重叠的像素块。每个块是否被加密取决于由相应检测到的块判断的重要性。有效块由可逆的隐藏变换执行,其后是多阶离散分数余弦变换参数,这两个变换的阶数由二维交叉混沌映射确定。实验结果表明,仅通过平均意义上加密大约一半像素,图像的显着轮廓特征就基本上被隐藏了。按键非常敏感,所提出的方案可以在一定程度上抵抗噪声攻击。

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