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Integer DCT-based Reversible Watermarking for Images Using Companding Technique

机译:基于整数的基于DCT的可逆水印,用于图像的图像使用强制技术

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We present a high capacity reversible watermarking scheme using companding technique over integer DCT coefficients of image blocks. This scheme takes advantage of integer DCT coefficients' Laplacian-shape-like distribution, which permits low distortion between the watermarked image and the original one caused by the bit-shift operations of the companding technique in the embedding process. In our scheme, we choose AC coefficients in the integer DCT domain for the bit-shift operation, and therefore the capacity and the quality of the watermarked image can be adjusted by selecting different numbers of coefficients of different frequencies. To prevent overflows and underflows in the spatial domain caused by modification of the DCT coefficients, we design a block discrimination structure to find suitable blocks that can be used for embedding without overflow or underflow problems. We can also use this block discrimination structure to embed an overhead of location information of all blocks suitable for embedding. With this scheme, watermark bits can be embedded in the saved LSBs of coefficient blocks, and retrieved correctly during extraction, while the original image can be restored perfectly.
机译:我们在图像块的整数DCT系数上使用了高容量可逆水印方案。该方案利用整数DCT系数的Laplacian形状的分布,其允许水印图像与由嵌入过程中的增加技术的比特换档操作引起的原始失真。在我们的方案中,我们选择用于位移操作的整数DCT域中的AC系数,因此可以通过选择不同频率的不同数量的不同系数来调整水印图像的容量和质量。为了防止通过修改DCT系数引起的空间域中的溢出和溢出,我们设计了一个块辨别结构,以找到可用于嵌入而不溢出或下溢问题的合适块。我们还可以使用此块识别结构来嵌入所有适合嵌入的块的位置信息的开销。利用该方案,水印比特可以嵌入在系数块的保存的LSB中,并在提取期间正确检索,而原始图像可以完全恢复。

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