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Reversible Data Hiding in Encrypted Images Based on Image Partition and Spatial Correlation

机译:基于图像分区和空间相关的加密图像隐藏在加密图像中的可逆数据

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Recently, more and more attention is paid to reversible data hiding (RDH) in encrypted images because of its better protection of privacy compared with traditional RDH methods directly operated in original images. In several RDH algorithms, prediction-error expansion (PEE) is proved to be superior to other methods in terms of embedding capacity and distortion of marked image and multiple histograms modification (MHM) can realize adaptive selection of expansion bins which depends on image content in the modification of a sequence of histograms. Therefore, in this paper, we propose an efficient RDH method in encrypted images by combining PEE and MHM, and design corresponding mode of image partition. We first divide the image into three parts: W (for embedding secret data), B (for embedding the least significant bit(LSB) of W) and G (for generating prediction-error histograms). Then, we apply PEE and MHM to embed the LSB of W to reserve space for secret data. Next, we encrypt the image and change the LSB of W to realize the embedding of secret data. In the process of extraction, the reversibility of image and secret data can be guaranteed. The utilization of correlation between neighbor pixels and embedded order decided by the smoothness of pixel in part W contribute to the performance of our method. Compared to the existing algorithms, experimental results show that the proposed method can reduce distortion to the image at given embedding capacity especially at low embedding capacity.
机译:最近,由于其在原始图像中直接操作的传统RDH方法,因此加密图像中的可逆数据隐藏(RDH)越来越多地关注加密图像中的可逆数据隐藏(RDH)。在几个RDH算法中,证明预测误差扩展(PEE)在嵌入容量和标记图像的失真和多个直方图修改(MHM)方面可以实现自适应选择取决于图像内容的自适应选择修改一系列直方图。因此,在本文中,我们通过组合PEE和MHM来提出加密图像中的有效RDH方法,以及设计相应的图像分区模式。我们首先将图像划分为三个部分:W(用于嵌入秘密数据),B(用于嵌入W)和G的最低有效位(LSB)(用于生成预测误差直方图)。然后,我们应用小便和MHM将W的LSB嵌入到保留空间以进行秘密数据。接下来,我们加密图像并更改W的LSB以实现秘密数据的嵌入。在提取过程中,可以保证图像和秘密数据的可逆性。利用相邻像素与嵌入顺序之间的相关性决定由像素的平滑度决定有助于我们的方法的性能。与现有算法相比,实验结果表明,所提出的方法可以在给定的嵌入容量下减少对图像的变形,尤其是在低嵌入容量。

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