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An effective fragile watermarking scheme for color image tampering detection and self-recovery

机译:用于彩色图像篡改检测和自我恢复的有效脆弱的水印方案

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摘要

In this paper, a fragile watermarking scheme for color-image authentication and self-recovery is proposed. Original image is divided into non-overlapping blocks, and for each i-th block, the watermarks used for recovery and authentication are generated, which are embedded into a different block according to an embedding sequence given by a permutation process. The designed scheme embeds the watermarks generated by each block within the 2-LSB, where a bit-adjustment phase is subsequently applied to increase the quality of the watermarked image. In order to increase the quality of the recovered image, we use in the post-processing stage the bilateral filter that efficiently suppresses noise preserving image edges. Additionally, in the tamper detection process high accuracy is achieved employing a hierarchical tamper detection algorithm. Finally, to solve tampering coincidence problem, three recovery watermarks are embedded in different positions to reconstruct a specific block, and a proposed inpainting algorithm is implemented to regenerate those regions affected by this problem. Simulation results demonstrate that the watermarked images appear to demonstrate higher quality, and the proposed novel scheme can reconstruct the alteration of extremely high rates (up to 80%), obtaining good quality for altered regions that are self-recovered with higher visual performance compared with a similar scheme from state of the-art methods.
机译:本文提出了一种用于彩色图像认证和自恢复的脆弱水印方案。原始图像被划分为非重叠块,并且对于每个第i个块,生成用于恢复和认证的水印,其根据置换过程给出的嵌入序列嵌入到不同的块中。设计方案嵌入由2-LSB内的每个块产生的水印,其中随后应用比特调整阶段以增加水印图像的质量。为了提高回收图像的质量,我们在后处理阶段使用的双侧滤波器有效地抑制噪声保留图像边缘。另外,在篡改检测过程中,采用分层篡改检测算法实现高精度。最后,为了解决篡改巧合问题,三个恢复水印嵌入在不同的位置中来重建特定块,并实现了一种提出的初始化算法以再生受此问题影响的那些区域。仿真结果表明,水印图像似乎展示了更高的质量,所提出的新颖方案可以重建极高速率(高达80%)的改变,获得改变的地区的良好质量,与较高的视觉性能相比一种类似的方案,从现有技术方法。

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