A game-theoretic system security design for the visible watermarking

MiFor '10 Pub Date : 2010-10-29 DOI:10.1145/1877972.1877980
Min-Jen Tsai, Jung Liu
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引用次数: 4

Abstract

Digital watermarking has been widely studied and regarded as a potentially effective means for protecting copyright of digital media in recent years. Among different categories of researches for digital watermarking, visible watermarking protect copyrights in a more active way since the approach not only prevents pirates but also visually recognizes the copyrights of multimedia data. However, how to determine the equilibrium of optimal security strategies between encoder and attacker and the optimal tradeoff between the intensity of embedded watermark and the perceptual translucence for visible watermark is becoming a subject of importance. Therefore, in order to achieve the best tradeoff between the embedding energy of watermark, the quality of perceptual watermark translucence and the image fidelity after attacks, a novel game-theoretic system security design for visible watermarking is proposed in this study. The watermark embedding problem is formulated as a dynamic non-cooperative game with complete information while the optimal strategy is defined by the Nash equilibrium of the game. The experimental results demonstrate the feasibility of the proposed approach which allows the watermark encoder to obtain the best watermarking strategy under attacks. Accordingly, our research could help to resolve security issue of visual communication.
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基于博弈论的可见水印系统安全设计
数字水印作为一种潜在的有效的数字媒体版权保护手段,近年来得到了广泛的研究。在数字水印研究的不同类别中,可见水印对版权的保护更为积极,它不仅可以防止盗版,还可以直观地识别多媒体数据的版权。然而,如何确定编码器和攻击者之间最优安全策略的平衡点,以及嵌入水印的强度与可见水印的感知半透明性之间的最优权衡,成为一个重要的课题。因此,为了在水印的嵌入能量、感知水印的半透明质量和攻击后的图像保真度之间达到最佳平衡,本文提出了一种新的博弈论可见水印系统安全设计。将水印嵌入问题表述为具有完全信息的动态非合作博弈,利用博弈的纳什均衡定义最优策略。实验结果证明了该方法的可行性,使水印编码器在受到攻击时能够获得最佳的水印策略。因此,我们的研究有助于解决视觉通信的安全问题。
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