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Kerckhoffs-Based Embedding Security Classes for WOA Data Hiding

机译:基于Kerckhoffs的WOA数据隐藏的嵌入安全性类

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It has recently been discovered that using pseudorandom sequences as carriers in spread-spectrum techniques for data-hiding is not at all a sufficient condition for ensuring data-hiding security. Using proper and realistic apriori hypothesis on the messages distribution, it is possible to accurately estimate the secret carriers by casting this estimation problem into a blind source separation problem. After reviewing relevant works on spread-spectrum security for watermarking, we further develop this topic to introduce the concept of security classes which broaden previous notions in watermarking security and fill the gap with steganography security as defined by Cachin. We define four security classes, namely, by order of creasing security: insecurity, key security, subspace security, and stegosecurity. To illustrate these views, we present two new modulations for truly secure watermarking in the watermark-only-attack (WOA) framework. The first one is called natural watermarking and can be made either stegosecure or subspace secure. The second is called circular watermarking and is key secure. We show that circular watermarking has robustness comparable to that of the insecure classical spread spectrum. We shall also propose information leakage measures to highlight the security level of our new spread-spectrum modulations.
机译:最近发现,在扩展频谱技术中使用伪随机序列作为载波进行数据隐藏根本不足以确保数据隐藏安全性。使用关于消息分布的正确且现实的先验假设,可以通过将这种估计问题转换为盲源分离问题来准确估计秘密载波。在回顾了有关水印扩频安全性的相关工作之后,我们进一步发展了这一主题,以引入安全性类的概念,该类扩展了水印安全性的先前概念,并填补了Cachin定义的隐写技术安全性的空白。我们按递减的安全性顺序定义了四个安全性类别:不安全性,密钥安全性,子空间安全性和隐身安全性。为了说明这些观点,我们提出了两种新的调制方式,以便在仅水印攻击(WOA)框架中实现真正安全的水印。第一个称为自然水印,可以将其设为隐身安全或子空间安全。第二个称为循环水印,并且是密钥安全的。我们表明,圆形水印的鲁棒性可与不安全的经典扩频相比。我们还将提出信息泄漏措施,以突出我们新扩频调制的安全级别。

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