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Simple Countermeasure to Non-Linear Collusion Attacks Targeted for Spread-Spectrum Fingerprinting Scheme

机译:针对扩频指纹方案的非线性共谋攻击的简单对策

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Based upon the Kerckhoffs' principle, illegal users can get to know the embedding and detection algorithms except for a secret key. Then, it is possible to access to a host signal which may be selected from frequency components of a digital content for embedding watermark signal. Especially for a fingerprinting scheme which embeds user's information as a watermark, the selected components can be easily found by the observation of differently watermarked copies of a same content. In this scenario, it is reported that some non-linear collusion attacks will be able to remove/modify the embedded signal. In this paper, we study the security analysis of our previously proposed spread-spectrum (SS) fingerprinting scheme[1], [2] under the Kerckhoffs' principle, and reveal its drawback when an SS sequence is embedded in a color image. If non-linear collusion attacks are performed only to the components selected for embedding, the traceability is greatly degraded while the pirated copy keeps high quality after the attacks. We also propose a simple countermeasure to enhance the robustness against non-linear collusion attacks as well as possible signal processing attacks for the underlying watermarking method.
机译:根据Kerckhoffs的原理,非法用户可以了解除密钥以外的嵌入和检测算法。然后,可以访问主机信号,该主机信号可以从用于嵌入水印信号的数字内容的频率分量中选择。特别是对于将用户信息作为水印嵌入的指纹方案,可以通过观察相同内容的不同水印副本轻松找到所选组件。在这种情况下,据报道,一些非线性共谋攻击将能够删除/修改嵌入的信号。在本文中,我们根据Kerckhoffs原理研究了先前提出的扩频(SS)指纹识别方案[1],[2]的安全性分析,并揭示了在彩色图像中嵌入SS序列时的缺点。如果仅对选择用于嵌入的组件执行非线性共谋攻击,则在攻击后盗版副本保持高质量的同时,可追溯性将大大降低。我们还提出了一种简单的对策,以增强针对非线性共谋攻击以及针对基础水印方法可能的信号处理攻击的鲁棒性。

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