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Combining low-frequency and spread-spectrum watermarking

机译:结合低频和扩频水印

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Abstract: Low-frequency watermarks and watermarks generated using spread spectrum techniques have complementary robustness properties. In this paper, we combine both watermarking paradigms to design an oblivious watermark that is capable of surviving an extremely wide range of severe image distortions. An image is first watermarked with a low- frequency pattern and then a spread spectrum signal is added to the watermarked image. Since both watermarks are embedded in a different portion of the frequency space, they do not interfere. For the low-frequency watermark, we modify the NEC scheme so that the original image is not needed for watermark extraction. The image is first normalized nd the watermark is embedded into the lowest frequency discrete cosine modes by encoding a binary pattern using a special quantization-like function. The low-frequency watermark is combined with a spread spectrum signal added to the middle frequencies of a DCT. The resulting double watermarked image is extremely robust with respect to a very wide range of quite severe image distortions including low-pass filtering, pixel permutations, JPEG compression, noise adding, and nonlinear deformations of the signal, such as gamma correction, histogram manipulations, and dithering. !27
机译:摘要:低频水印和使用扩频技术生成的水印具有互补的鲁棒性。在本文中,我们结合了两个水印范式来设计一个可以忽略的水印,该水印能够承受极为广泛的严重图像失真。首先用低频图案对图像加水印,然后将扩频信号添加到加水印的图像。由于两个水印均嵌入频率空间的不同部分,因此它们不会相互干扰。对于低频水印,我们修改了NEC方案,以便水印提取不需要原始图像。首先对图像进行归一化处理,然后通过使用特殊的类似于量化的函数对二进制模式进行编码,将水印嵌入最低频率的离散余弦模式。低频水印与添加到DCT中频的扩频信号相结合。所产生的双水印图像在非常严重的图像失真范围内具有极强的鲁棒性,包括低通滤波,像素排列,JPEG压缩,噪声添加以及信号的非线性变形(例如伽马校正,直方图操作),和抖动。 !27

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