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A square lattice oriented reversible information hiding scheme with reversibility and adaptivity for dual images

机译:具有双向性和适应性的方格面向可逆信息隐藏方案

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摘要

This paper proposes an adaptive dual-image-based reversible information hiding scheme. First, for a pixel pair in the original image, an associated square lattice is selected to determine the maximum distortion that will be induced by hiding information. Then, an embedding rule, which combines the selected square lattice with integer rounding, is constructed. In addition, a novel histogram shifting mechanism to solve the problems of overflow and underflow is designed to decrease the distortions that are caused by the shifting of a large number of pixels. In our approach, both the original image and the secret messages can be recovered losslessly. Our experimental results show that the proposed scheme achieved performance that was superior to the state-of-the-art schemes, resulting in embedding rates up to 1.40 bpp and average PSNRs of approximately 47.60 dB. The proposed scheme also can be used in real-time systems due to the simplicity of its computations. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文提出了一种基于自适应双图像的可逆信息隐藏方案。首先,对于原始图像中的一个像素对,选择一个相关的方格以确定隐藏信息会引起的最大失真。然后,构造将所选方格与整数舍入相结合的嵌入规则。另外,设计了一种新颖的直方图移位机制来解决上溢和下溢的问题,以减少由于大量像素移位而引起的失真。在我们的方法中,原始图像和秘密消息都可以无损地恢复。我们的实验结果表明,提出的方案实现了优于最新方案的性能,从而导致嵌入速率高达1.40 bpp,平均PSNR约为47.60 dB。由于其计算的简单性,所提出的方案也可以在实时系统中使用。 (C)2019 Elsevier Inc.保留所有权利。

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