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A Capacity-Achieving Simple Decoder for Bias-Based Traitor Tracing Schemes

机译:基于偏差的叛徒追踪方案的可实现容量的简单解码器

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We investigate alternative suspicion functions for bias-based traitor tracing schemes, and present a practical construction of a simple decoder that attains capacity in the limit of large coalition size . We derive optimal suspicion functions in both the restricted-digit model and the combined-digit model. These functions depend on information that is usually not available to the tracer—the attack strategy or the tallies of the symbols received by the colluders. We discuss how such results can be used in realistic contexts. We study several combinations of coalition attack strategy versus suspicion function optimized against some attack (another attack or the same). In many of these combinations, the usual codelength scaling changes to a lower power of , e.g., . We find that the interleaving strategy is an especially powerful attack. The suspicion function tailored against interleaving is the key ingredient of the capacity-achieving construction.
机译:我们研究了基于偏见的叛徒追踪方案的替代怀疑函数,并提出了一种简单解码器的实用构造,该解码器可在大联盟规模的限制内获得容量。我们在受限数字模型和组合数字模型中都得出了最佳的怀疑函数。这些功能取决于跟踪程序通常不可用的信息-攻击策略或共谋者收到的符号的计数。我们讨论了如何在现实情况下使用这些结果。我们研究了针对某些攻击(另一种攻击或相同攻击)优化的联盟攻击策略与怀疑功能的几种组合。在这些组合中的许多组合中,通常的代码长度缩放改变为例如的较低功率。我们发现交错策略是一种特别强大的攻击。针对交织量身定制的怀疑功能是容量构建的关键要素。

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