Reversible Data Hiding Based on Multiple Pairwise PEE and Two-Layer Embedding

Wenguang He, Gangqiang Xiong, Yaomin Wang
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引用次数: 3

Abstract

Recent reversible data hiding (RDH) work tends to realize adaptive embedding by discriminately modifying pixels according to image content. However, further optimization and computational complexity remain great challenges. By presenting a better incorporation of pixel value ordering (PVO) prediction and pairwise prediction-error expansion (PEE) technologies, this paper proposes a new RDH scheme. The largest/smallest three pixels of each block are utilized to generate error-pairs. To achieve optimization of the distribution of error pairs, two-layer embedding is introduced such that full-enclosed pixels of each block can be used to determine how to optimally define the spatial location of pixels within block. Then, to modify error pairs with less distortion introduced, the shifted pairing error is involved in the separable utilization of the other one; i.e., it serves as the context for recalculating the other one. Since the recalculation is equivalent to expansion bins selection, various extensions of original pairwise PEE are designed, parameterized, and combined into the so-called multiple pairwise PEE, with which the 2D histogram can be divided into a set of sub-ones for more accurate modification. The experimental results verify the superiority of the proposed scheme over several PVO-based schemes. On the Kodak image database, the average PSNR gains over original PVO-based pairwise PEE are 0.83 and 0.99 dB for capacities of 10,000 and 20,000 bits, respectively.
基于多重成对PEE和两层嵌入的可逆数据隐藏
最近的可逆数据隐藏(RDH)工作倾向于根据图像内容对像素进行判别性修改,从而实现自适应嵌入。然而,进一步的优化和计算复杂度仍然是巨大的挑战。通过更好地结合像素值排序(PVO)预测和成对预测误差扩展(PEE)技术,提出了一种新的RDH方案。每个块的最大/最小三个像素被用来生成错误对。为了实现误差对分布的优化,引入了两层嵌入,利用每个块的全封闭像素来确定如何最优地定义块内像素的空间位置。然后,为了修正引入较少畸变的误差对,将偏移的配对误差引入到另一个误差对的可分离利用中;也就是说,它作为重新计算另一个的上下文。由于重新计算相当于扩展箱的选择,因此对原始成对PEE的各种扩展进行设计、参数化并组合成所谓的多重成对PEE,从而将二维直方图划分为一组子图,以便更精确地修改。实验结果验证了该方案相对于几种基于pvo的方案的优越性。在柯达图像数据库中,在容量为10,000和20,000比特时,平均PSNR增益分别为0.83和0.99 dB,高于原始基于pvo的成对PEE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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