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基于双相位直方图移位的加密图像大容量可逆数据隐藏。

High-capacity reversible data hiding in encrypted images based on two-phase histogram shifting.

机构信息

Computer Engineering College, Jimei University, Xiamen, 361021, China.

Department of Information Engineering and Computer Science, Feng Chia University, Taichung, 40724, Taiwan.

出版信息

Math Biosci Eng. 2019 May 6;16(5):3947-3964. doi: 10.3934/mbe.2019195.

Abstract

With the extensive use of cloud services in different applications, it's a problem for the cloud service provider to manage or process the privacy data that are encrypted by the content owner. Therefore, signal processing technology in the encrypted domain has attracted the attention of researchers. In this paper, we propose a new reversible data hiding method for encrypted images based on two-phase histogram shifting. In the proposed method, the original image is encrypted by using special image division and additive homomorphic encryption. After image encryption, the encrypted image can partially maintain spatial correlation for data embedding while the content security of the encrypted image is ensured. Due to the spatial correlation, the data hider can generate two difference histograms from the encrypted image, which provide high embedding capacity. A two-phase histogram shift scheme is used to embed the secret data into the two difference histograms. At the receiver side, the secret data can be extracted from the encrypted image or the decrypted image, and the image can be recovered to its original version without any error. The experimental results demonstrated that the proposed method can efficiently improve the capacity of data embedding and outperform other related methods, while the visual quality of the marked image can be maintained.

摘要

随着云服务在不同应用中的广泛使用,云服务提供商在管理或处理内容所有者加密的隐私数据方面存在问题。因此,加密域中的信号处理技术引起了研究人员的关注。在本文中,我们提出了一种基于双相位直方图移位的新的加密图像可逆数据隐藏方法。在提出的方法中,原始图像通过特殊的图像划分和加法同态加密进行加密。图像加密后,加密图像在保证加密图像内容安全的同时,能够部分保持数据嵌入的空间相关性。由于空间相关性,数据隐藏器可以从加密图像中生成两个差分直方图,从而提供高嵌入容量。使用双相位直方图移位方案将秘密数据嵌入到两个差分直方图中。在接收端,可以从加密图像或解密图像中提取秘密数据,并在不产生任何错误的情况下将图像恢复到原始版本。实验结果表明,该方法可以有效地提高数据嵌入的容量,并且优于其他相关方法,同时可以保持标记图像的视觉质量。

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