基于快速相关攻击的几何不变水印

Dan Wang, Peizhong Lu
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引用次数: 4

摘要

提出了一种基于流密码快速相关攻击的几何不变水印方案。将水印的二进制位序列作为初始状态输入到LSFR中,并将输出的m序列嵌入到根据尺度空间Harris特征点和Delaunay细分得到的三角形中。在检测过程中,基于快速相关攻击技术提取嵌入水印。由于其强大的纠错能力,可以很容易地获得对几何畸变和普通信号处理的鲁棒性。仿真结果表明,该方案对各种几何攻击具有很强的鲁棒性,即使在StirMark中包含RBA攻击。
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Geometrically Invariant Watermark Using Fast Correlation Attacks
This paper proposes a novel geometrical invariant watermark scheme based on fast correlation attacks of stream ciphers. The binary bit sequences of watermark as the initial state are fed into the LSFR, and the output m-sequence is embedded into the triangles that are obtained according to the scale-space Harris feature points and Delaunay tessellations. During the detection, the embedded watermark will be extracted based on the fast correlation attacks technique. Owing to its powerful error-correcting capability, the robustness against both geometrical distortion and common signal processing can be readily obtained. Simulation results show that the proposed scheme is highly robust against all kinds of geometrical attacks even including RBA in the StirMark.
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