论文标题

基于最大直流系数的无盖视频隐志

Coverless Video Steganography based on Maximum DC Coefficients

论文作者

Meng, Laijin, Jiang, Xinghao, Zhang, Zhenzhen, Li, Zhaohong, Sun, Tanfeng

论文摘要

近年来,无覆盖的隐身志一直引起人们的极大兴趣,因为这是一项可以通过不修改载体来绝对抵制the骨分析的技术。但是,大多数现有的无覆盖术算法选择图像作为载体,并且关于无覆盖视频隐肌的研究很少。实际上,视频是一家更具安全性,更有信息的运营商。在本文中,提出了一种基于最大直流(DC)系数的新型无封面的视频隐志算法。首先,考虑到视频编码过程的直流系数的高斯分布模型,这表明块中最大直流系数的变化分布比相邻的直流系数更稳定。然后,提出了一种基于最大直流系数的新型哈希序列生成方法。之后,建立了视频索引结构,以加快搜索视频的效率。在信息隐藏过程中,秘密信息转换为二进制片段,根据视频索引结构,选择等于秘密信息段的视频等于秘密信息段。最后,所有选定的视频和辅助信息都发送给接收者。尤其是,本文首次考虑了视频载体的主观安全性,辅助信息的成本和视频压缩的鲁棒性。实验结果和分析表明,与最先进的无覆盖术算法相比,所提出的算法在容量,鲁棒性和安全性方面的性能更好。

Coverless steganography has been a great interest in recent years, since it is a technology that can absolutely resist the detection of steganalysis by not modifying the carriers. However, most existing coverless steganography algorithms select images as carriers, and few studies are reported on coverless video steganography. In fact, video is a securer and more informative carrier. In this paper, a novel coverless video steganography algorithm based on maximum Direct Current (DC) coefficients is proposed. Firstly, a Gaussian distribution model of DC coefficients considering video coding process is built, which indicates that the distribution of changes for maximum DC coefficients in a block is more stable than the adjacent DC coefficients. Then, a novel hash sequence generation method based on the maximum DC coefficients is proposed. After that, the video index structure is established to speed up the efficiency of searching videos. In the process of information hiding, the secret information is converted into binary segments, and the video whose hash sequence equals to secret information segment is selected as the carrier according to the video index structure. Finally, all of the selected videos and auxiliary information are sent to the receiver. Especially, the subjective security of video carriers, the cost of auxiliary information and the robustness to video compression are considered for the first time in this paper. Experimental results and analysis show that the proposed algorithm performs better in terms of capacity, robustness, and security, compared with the state-of-the-art coverless steganography algorithms.

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