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Dynamic traitor tracing schemes, revisited

机译:再谈动态叛徒追踪方案

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摘要

We revisit recent results from the area of collusion-resistant traitor tracing, and show how they can be combined and improved to obtain more efficient dynamic traitor tracing schemes. In particular, we show how the dynamic Tardos scheme of Laarhoven et al. can be combined with the optimized score functions of Oosterwijk et al. to trace coalitions much faster. If the attack strategy is known, in many cases the order of the code length goes down from quadratic to linear in the number of colluders, while if the attack is not known, we show how the interleaving defense may be used to catch all colluders about twice as fast as in the dynamic Tardos scheme. Some of these results also apply to the static traitor tracing setting where the attack strategy is known in advance, and to group testing.
机译:我们从防串谋叛徒追踪领域重新审视了最近的结果,并展示了如何将它们结合起来并加以改进,以获得更有效的动态叛徒追踪方案。特别是,我们展示了Laarhoven等人的动态Tardos方案。可以与Oosterwijk等人的优化得分函数结合使用。可以更快地追踪联盟。如果知道了攻击策略,则在许多情况下,共谋者的数量从代码长度的顺序从二次到线性下降,而如果不知道攻击,我们将展示如何使用交错防御来捕获所有共谋者是动态Tardos方案的两倍。其中一些结果还适用于预先知道攻击策略的静态叛逆者跟踪设置,以及组测试。

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