Image forensics using generalised Benford's Law for accurate detection of unknown JPEG compression in watermarked images

Xi Zhao, A. Ho, Y. Shi
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引用次数: 15

Abstract

In the past few years, semi-fragile watermarking has become increasingly important as it can be used to verify the content of images and to localise the tampered areas, while tolerating some non-malicious manipulations. In the literature, the majority of semi-fragile algorithms have applied a predetermined threshold to tolerate errors caused by JPEG compression. However, this predetermined threshold is typically fixed and cannot be easily adapted to different amounts of errors caused by unknown JPEG compression at different quality factors (QFs) applied to the watermarked images. In this paper, we analyse the relationship between QF and threshold, and propose the use of generalised Benford's Law as an image forensics technique for semi-fragile watermarking, to accurately detect the unknown QF of the images. The results obtained show an overall average QF correct detection rate of approximately 99% when 5% of the pixels are subjected to image content tampering, as well as compression using different QFs (ranging from 95 to 65). Consequently, our proposed image forensics method can adaptively adjust the threshold for images based on the estimated QF, therefore, improving the accuracy rates in authenticating and localising the tampered regions for semi-fragile watermarking.
图像取证使用广义本福德定律准确检测未知的JPEG压缩水印图像
在过去的几年里,半脆弱水印变得越来越重要,因为它可以用来验证图像的内容和定位篡改区域,同时容忍一些非恶意的操作。在文献中,大多数半脆弱算法都应用了预先确定的阈值来容忍JPEG压缩引起的错误。然而,这个预先确定的阈值通常是固定的,不能很容易地适应应用于水印图像的不同质量因子(qf)的未知JPEG压缩所引起的不同数量的错误。本文分析了QF与阈值之间的关系,提出将广义本福德定律作为半脆弱水印的图像取证技术,以准确检测图像的未知QF。得到的结果表明,当5%的像素受到图像内容篡改时,以及使用不同的QF(范围从95到65)进行压缩时,总体平均QF正确检测率约为99%。因此,我们提出的图像取证方法可以根据估计的QF自适应调整图像的阈值,从而提高了半脆弱水印的认证和篡改区域定位的准确率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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