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Adaptive reversible data hiding based on a local smoothness estimator

机译:基于局部平滑度估计器的自适应可逆数据隐藏

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摘要

A novel reversible watermarking (RW) scheme based on a local smoothness estimator and multi-step embedding strategy is proposed in this paper. All the pixels are divided into four equal parts. Correspondingly, the watermark embedding process is separated into four independent steps. Thus each step is performed to embed watermark information into its corresponding image part. In each step, for each to-be-embedded pixel, a local smoothness estimator defined as the variance of its total neighbors is presented to estimate its local smoothness. An obvious advantage of introducing this estimator is that it can determine those pixels in smooth regions accurately. In fact, accurate determination means the decrease in embedding distortion. At the low embedding rate (ER), modifications induced by difference expansion (DE) are done only to those pixels located in smooth regions. Hence, the proposed method can obtain high embedding capacity while maintaining good visual quality. With ER gradually increased, adaptive embedding is employed. In adaptive embedding, for one to-be-embedded pixel, 1 or 2 bits are adaptively embedded according to the strength of relationship among all the pixels surrounding it. The experimental results demonstrate that the proposed method is effective.
机译:提出了一种基于局部平滑度估计和多步嵌入策略的可逆水印算法。所有像素均分为四个相等的部分。相应地,水印嵌入过程分为四个独立的步骤。因此,执行每个步骤以将水印信息嵌入到其相应的图像部分中。在每个步骤中,对于每个要嵌入的像素,提出一个局部平滑度估计器,该局部平滑度估计器定义为其总邻居的方差,以估计其局部平滑度。引入此估算器的明显优势是,它可以准确确定平滑区域中的那些像素。实际上,准确的确定意味着减少嵌入失真。在低嵌入率(ER)下,仅对位于平滑区域中的那些像素进行由差异扩展(DE)引起的修改。因此,提出的方法可以在保持良好视觉质量的同时获得较高的嵌入能力。随着ER的逐渐增加,采用了自适应嵌入。在自适应嵌入中,对于一个要嵌入的像素,根据其周围的所有像素之间的关系强度来自适应地嵌入1或2位。实验结果表明,该方法是有效的。

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