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An indirect watermark hiding in discrete cosine transform–singular value decomposition domain for copyright protection

机译:隐藏在离散余弦变换-奇异值分解域中的间接水印用于版权保护

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摘要

Digital image watermarking has emerged as a promising solution for copyright protection. In this paper, a discrete cosine transform (DCT) and singular value decomposition (SVD) based hybrid robust image watermarking method using Arnold scrambling is proposed and simulated to protect the copyright of natural images. In this proposed scheme, before embedding, watermark is scrambled with Arnold scrambling. Then, the greyscale cover image and encrypted watermark logo are decomposed into non-overlapping blocks and subsequently some selected image blocks are transformed into the DCT domain for inserting the watermark blocks permanently. For better imperceptibility and effectiveness, in this proposed algorithm, watermark image blocks are embedded into singular values of selected blocks by multiplying with a feasible scaling factor. Simulation result demonstrates that robustness is achieved by recovering satisfactory watermark data from the reconstructed cover image after applying common geometric transformation attacks (such as rotation, flip operation, cropping, scaling, shearing and deletion of lines or columns operation), common enhancement technique attacks (such as low-pass filtering, histogram equalization, sharpening, gamma correction, noise addition) and jpeg compression attacks.
机译:数字图像水印已成为一种有希望的版权保护解决方案。提出了一种基于离散余弦变换(DCT)和奇异值分解(SVD)的混合鲁棒图像水印方法,该方法利用Arnold扰码技术进行了仿真,以保护自然图像的版权。在该提议的方案中,在嵌入之前,使用Arnold加扰对水印进行加扰。然后,将灰度封面图像和加密的水印徽标分解为非重叠块,然后将某些选定的图像块转换为DCT域,以永久插入水印块。为了获得更好的不易察觉性和有效性,在该算法中,通过与可行的缩放因子相乘,将水印图像块嵌入到所选块的奇异值中。仿真结果表明,通过应用常见的几何变换攻击(例如旋转,翻转操作,裁剪,缩放,剪切和删除线或列操作),常见的增强技术攻击(从重建的封面图像中恢复令人满意的水印数据)可以实现鲁棒性例如低通滤波,直方图均衡,锐化,伽玛校正,噪声添加)和jpeg压缩攻击。

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