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A Message-Passing Approach to Combating Desynchronization Attacks

机译:一种消除异步攻击的消息传递方法

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We propose a new paradigm for blind watermark decoding in the presence of desynchronization attacks. Employing Forney-style factor graphs to model the watermarking system, we cast the blind watermark decoding problem as a probabilistic inference problem on a graph, and solve it via message-passing. We study a wide range of moderate to strong attacks including scaling, amplitude modulation, fractional shift, arbitrary linear and shift-invariant filtering, and blockwise filtering, and show that the graph-based iterative decoders perform almost as well as if they had exact knowledge of the desynchronization attack parameters. Other desirable features of the graph-based decoders include the flexibility to adapt to other types of attacks and the ability to cope with the “curse of dimensionality” problem that seemingly results when the desynchronization parameter space has high dimensionality. These properties are unlike most blind watermark decoders proposed to date.
机译:我们提出了一种在存在非同步攻击的情况下盲水印解码的新范例。利用Forney风格的因子图对水印系统进行建模,我们将盲水印解码问题作为概率推断问题投射到图上,并通过消息传递来解决。我们研究了范围广泛的中度到强度攻击,包括缩放,幅度调制,分数移位,任意线性和移位不变滤波以及逐块滤波,并显示了基于图的迭代解码器的性能几乎与他们具有确切的知识一样不同步攻击参数。基于图的解码器的其他理想功能包括适应其他类型攻击的灵活性,以及​​应对在去同步参数空间具有高维数时似乎导致的“维数诅咒”问题的能力。这些特性不同于迄今为止提出的大多数盲水印解码器。

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