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Reversible watermarking schemes based on expansion embedding using pixel partition strategies

机译:基于扩展嵌入的可逆水印方案,使用像素分区策略

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摘要

Reversible watermarking methods have drawn attention of many researchers in recent years because original cover objects can be completely restored upon extraction of embedded information. The prediction error expansion (PEE) embedding proposed by Thodi and Rodriguez can embed one information bit into one cover pixel and achieve good visual quality of watermarked images. However, the PEE method is not a generalised scheme and its embedding capacity measured by bit per pixel (bpp) and visual quality measured by peak signal-to-noise ratio (PSNR) can be improved. Thus, we propose two novel schemes based on the PEE method by using pixel partition strategies to improve embedding capacity and/or visual quality. The first proposed scheme makes the PEE method be generalised and the second proposed scheme can embed more than 1 bpp. Experimental results show that the proposed schemes can significantly improve visual quality of the watermarked images produced by the PEE method when embedding capacity falls within the range [0.1, 1]. In particular, when an embedding capacity belongs to the range [0.1, 0.5], in average, the first proposed scheme with K=1 can improve the PSNR of the PEE method at least 13 dB for test images. In addition, when embedding capacity falls within the range [0.1, 1], in average, the second proposed scheme with K= 1 can improve the PSNR of the PEE method at least 14 dB for test images.
机译:近年来,可逆水印方法吸引了许多研究人员的关注,因为原始掩盖对象可以在提取嵌入信息后完全恢复。 Thodi和Rodriguez提出的预测误差扩展(PEE)嵌入可以将一个信息位嵌入一个覆盖像素中,并获得水印图像的良好视觉质量。但是,PEE方法不是通用方案,并且可以提高其按位/像素(bpp)度量的嵌入能力和按峰值信噪比(PSNR)度量的视觉质量。因此,我们提出了两种基于PEE方法的新颖方案,即通过使用像素分区策略来提高嵌入能力和/或视觉质量。第一个提出的方案使PEE方法得以推广,第二个提出的方案可以嵌入1 bpp以上的值。实验结果表明,当嵌入量在[0.1,1]范围内时,提出的方案可以显着提高PEE方法产生的水印图像的视觉质量。特别地,当嵌入容量平均在[0.1,0.5]范围内时,第一个提出的K = 1的方案可以将PEE方法的PSNR至少提高13 dB,以用于测试图像。另外,当嵌入容量落在[0.1,1]范围内时,平均而言,第二种建议的K = 1的方案可以将PEE方法的PSNR至少提高14 dB,以用于测试图像。

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