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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >A feature-based image watermarking scheme robust to local geometrical distortions
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A feature-based image watermarking scheme robust to local geometrical distortions

机译:基于特征的图像水印方案对局部几何变形具有鲁棒性

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摘要

Geometric attacks are the Achilles heel for many image watermarking schemes. Geometric attacks can be decomposed into two classes: global affine transforms and local geometrical distortions. Most countermeasures proposed in the literature only address the problem of global affine transforms (e.g. rotation, scaling and translation). In this paper, we propose a blind image watermarking algorithm robust to local geometrical distortions such as row or column removal, cropping, local random bend, etc. The robust feature points are adaptively extracted from digital images and local image regions (circular regions) that are invariant to geometric attacks are obtained according to the multi-scale space representation and image normalization. At each local image region, the watermark is embedded by quantizing the magnitudes of the pseudo-Zernike moments. By binding digital watermark with local image regions, resilience against local geometrical distortions can be readily obtained. Experimental results show that the proposed image watermarking is not only invisible and robust against common image processing operations, such as sharpening, noise adding, JPEG compression, etc, but also robust against geometric attacks such as rotation, translation, scaling, row or column removal, copping, local random bend, etc.
机译:几何攻击是许多图像水印方案的致命弱点。几何攻击可分为两类:整体仿射变换和局部几何变形。文献中提出的大多数对策仅解决全局仿射变换(例如,旋转,缩放和平移)的问题。在本文中,我们提出了一种对局部几何失真(例如行或列去除,裁剪,局部随机弯曲等)具有鲁棒性的盲图像水印算法。鲁棒性特征点是从数字图像和局部图像区域(圆形区域)中自适应提取的根据多尺度空间表示和图像归一化,获得了几何攻击的不变性。在每个局部图像区域,通过量化伪泽尼克矩的大小来嵌入水印。通过将数字水印与局部图像区域绑定在一起,可以轻松获得针对局部几何变形的弹性。实验结果表明,所提出的图像水印不仅对常见的图像处理操作(如锐化,噪声添加,JPEG压缩等)不可见且具有鲁棒性,而且对于诸如旋转,平移,缩放,行或列删除之类的几何攻击也具有鲁棒性,处理,局部随机弯曲等。

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