On the systematic generation of Tardos’s fingerprinting codes

M. Kuribayashi, N. Akashi, M. Morii
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引用次数: 15

Abstract

Digital fingerprinting is used to trace back illegal users, where unique ID known as digital fingerprints is embedded into a content before distribution. On the generation of such fingerprints, one of the important properties is collusion-resistance. Binary codes for fingerprinting with a code length of theoretically minimum order were proposed by Tardos, and the related works mainly focused on the reduction of the code length were presented. In this paper, we present a concrete and systematic construction of the Tardospsilas fingerprinting code using a chaotic map. Using a statistical model for correlation scores, a proper threshold for detecting colluders is calculated. Furthermore, for the reduction of computational costs required for the detection, a hierarchical structure is introduced on the codewords. The collusion-resistance of the generated fingerprinting codes is evaluated by a computer simulation.
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论塔尔多斯指纹码的系统生成
数字指纹技术是在内容发布前嵌入被称为数字指纹的唯一ID,用于追踪非法用户的技术。在生成此类指纹时,一个重要的特性是抗合谋性。Tardos提出了一种码长为理论最小阶的指纹二进制码,并对码长缩减进行了研究。在本文中,我们提出了一个具体的、系统的基于混沌映射的Tardospsilas指纹编码结构。利用相关分数的统计模型,计算出检测共谋的合适阈值。此外,为了减少检测所需的计算成本,在码字上引入了层次结构。通过计算机仿真,对所生成的指纹码的抗串通性能进行了评价。
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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