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Reversible data hiding using multi-pass pixel-value-ordering and pairwise prediction-error expansion

机译:使用多通像素值排序和成对预测误差扩展的可逆数据

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摘要

Pixel value ordering (PVO) prediction can achieve remarkable accuracy and thus provide a rather sharp histogram. In addition, the efficiency in histogram manipulation also attracts much attention in recent works. In this paper, a new reversible data hiding scheme based on multi-pass PVO and pairwise PEE is proposed. After dividing the host image into non-overlapped blocks, the largest/smallest two pixels within block are predicted to form a prediction-error pair and finally a 2D prediction-error histogram. Here, the third largest/smallest pixel no longer always serves as predicted value. Once any one error in a pair is shifted, we propose to adaptively re-calculate the other one. For smooth block, location information is considered and then more expandable errors are obtained. For normal block, the shifted pixel is involved in prediction and shifting two errors in a pair without carrying any bit can be avoided. Such multi-pass prediction leads to the so-called high and low power version of PVO-based pairwise PEE. Experimental results verify that their combination can achieve very efficient capacity-distortion trade-off and thus outperform previous PVO-based schemes. (C) 2018 Elsevier Inc. All rights reserved.
机译:像素值排序(PVO)预测可以实现显着的精度,从而提供相当尖锐的直方图。此外,直方图操纵的效率也吸引了最近的作品。本文提出了一种基于多通PVO和成对小便的新的可逆数据隐藏方案。在将主机图像划分为非重叠块之后,预测块内的最大/最小的两个像素以形成预测错误对并且最后是2D预测误差直方图。这里,第三大/最小像素不再始终用作预测值。一旦对一对中的任何错误移位,我们建议自适应地重新计算另一个。对于平滑块,考虑位置信息,然后获得更可扩展的错误。对于正常块,移位像素涉及预测并在不携带任何比特的情况下移位两个错误。这种多通预测导致所谓的基于PVO的一对PEE的高功率版本。实验结果验证了它们的组合可以实现非常有效的容量失真折衷,从而优于以前的基于PVO的方案。 (c)2018年Elsevier Inc.保留所有权利。

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