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Difference Energy Based Blind Image Watermarking Resisting to Geometrical Distortions

机译:基于差能量的抗几何失真的盲图像水印

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摘要

In this paper a blind image watermarking that can resist to rotation, scaling and translation (RST) attacks is proposed. Based on the spread spectrum, the watermark is modulated before embedding. The log-polar mapped discrete fourier transform (LPM-DFT) magnitude of a disk, a part of the origin image, constitutes the RST-invariant domain, where the origin of the LPM is the center of the disk and the sampling rates of the LPM are constant. After the middle frequency band of LPM-DFT magnitude, namely the watermark-embedding domain, is grouped according to the watermark length, the watermark is embedded by adjusting the difference between the two sub-region energy in each group. To improve the imperceptibility, the watermark-embedding domain is shuffled before embedding and the watermark is not embedded directly into the watermark-embedding domain. In watermark detection procedure, neither the original image nor any knowledge about the distortions is required. Experimental results show that the proposed scheme is very robust against RST distortion and common image processing attacks.
机译:本文提出了一种可以抵抗旋转,缩放和平移(RST)攻击的盲图像水印。基于扩展频谱,在嵌入之前对水印进行调制。磁盘的对数极性映射离散傅立叶变换(LPM-DFT)量级(作为原始图像的一部分)构成RST不变域,其中LPM的原点是磁盘的中心,采样速率为磁盘的中心。 LPM是恒定的。在根据水印长度对LPM-DFT大小的中频带即水印嵌入域进行分组之后,通过调整每组中两个子区域能量之间的差异来嵌入水印。为了提高不可感知性,在嵌入之前将水印嵌入域进行混洗,并且不将水印直接嵌入水印嵌入域中。在水印检测过程中,既不需要原始图像,也不需要任何有关失真的知识。实验结果表明,该方案对RST失真和常见的图像处理攻击具有很好的鲁棒性。

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