A High Capacity Reversible Watermarking Algorithm Based on Block-Level Prediction Error Histogram Shifting

Xin Tang, Dan Liu, Linna Zhou, Yi Zhang
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引用次数: 2

Abstract

The paper proposes a high capacity reversible watermarking algorithm based on block-level prediction error histogram shifting. This algorithm, in contrast to the known prediction error histogram shifting based ones, provides a higher embedding capacity, which is achieved by employing similarity among adjacent blocks rather than simply pixels inside of a block. The imperceptibility is ensured by the premise that once the block selected is small enough, the center pixels of adjacent blocks have high probability of similarity or equality. At last, the effectiveness and performance are evaluated by experiments and the result shows that our proposed algorithm has higher capacity under the same imperceptibility compared with the classic prediction error histogram shifting based reversible watermarking algorithm as well as the state-of-the-art.
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基于块级预测误差直方图移位的高容量可逆水印算法
提出了一种基于块级预测误差直方图移位的高容量可逆水印算法。与已知的基于直方图移位的预测误差算法相比,该算法提供了更高的嵌入容量,这是通过利用相邻块之间的相似性而不是简单地利用块内的像素来实现的。一旦选择的块足够小,相邻块的中心像素具有高概率的相似或相等,这是保证不可感知性的前提。最后,通过实验对该算法的有效性和性能进行了评价,结果表明,与经典的基于预测误差直方图偏移的可逆水印算法相比,在相同的不可感知性下,该算法具有更高的容量。
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