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Digital Watermarking under a Filtering and Additive Noise Attack Condition

机译:滤波和加性噪声攻击条件下的数字水印

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摘要

We consider a private zero-bit watermark (WM) system in which an unauthorized removal of the WM is restricted by a linear filtering of the watermarked message combined with additive noise attack. It is assumed that a WM detector knows both the original cover message (CM) and the pulse (or frequency) response of the attack filter. The formulas to calculate the WM-missing and WM-false alarm probabilities are developed and proved. We conclude that whenever some filtering of the watermarked message is yet acceptable with respect to CM quality then there results in a degradation of the WM system even if the designer of the WM uses an optimal signal. This fact is different than most that can be found at current WM literature. The main properties of a WM system under a filtering and additive noise attack condition are confirmed by simulations of the watermarked images.
机译:我们考虑一个专用的零位水印(WM)系统,在该系统中,对水印消息的线性过滤与加性噪声攻击相结合,限制了未经授权删除WM。假定WM检测器同时知道原始掩护消息(CM)和攻击过滤器的脉冲(或频率)响应。开发并证明了计算WM丢失和WM虚警概率的公式。我们得出的结论是,只要就CM质量而言,只要对水印消息的某些过滤仍可接受,那么即使WM的设计人员使用了最佳信号,也会导致WM系统的性能下降。这个事实与当前WM文献中发现的大多数事实不同。通过对水印图像的仿真,可以确定WM系统在滤波和加性噪声攻击条件下的主要性能。

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