Capacities and capacity-achieving decoders for various fingerprinting games

Thijs Laarhoven
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引用次数: 20

Abstract

Combining an information-theoretic approach to fingerprinting with a more constructive, statistical approach, we derive new results on the fingerprinting capacities for various informed settings, as well as new log-likelihood decoders with provable code lengths that asymptotically match these capacities. The simple decoder built against the interleaving attack is further shown to achieve the simple capacity for unknown attacks, and is argued to be an improved version of the recently proposed decoder of Oosterwijk et al. With this new universal decoder, cut-offs on the bias distribution function can finally be dismissed. Besides the application of these results to fingerprinting, a direct consequence of our results to group testing is that (i) a simple decoder asymptotically requires a factor 1.44 more tests to find defectives than a joint decoder, and (ii) the simple decoder presented in this paper provably achieves this bound.
用于各种指纹游戏的容量和容量实现解码器
将信息理论方法与更具建设性的统计方法相结合,我们得出了各种信息设置下指纹识别能力的新结果,以及具有可证明的代码长度的新对数似是译码器,该译码器与这些能力渐近匹配。针对交错攻击构建的简单解码器进一步证明可以实现对未知攻击的简单容量,并且被认为是Oosterwijk等人最近提出的解码器的改进版本。有了这种新的通用解码器,对偏置分布函数的截止可以最终消除。除了将这些结果应用于指纹识别之外,我们的结果对群测试的直接影响是(i)一个简单解码器渐近地需要比联合解码器多1.44倍的测试来发现缺陷,并且(ii)本文中提出的简单解码器可证明地达到了这个界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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