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Multimedia fingerprinting for multiuser forensics and security.

机译:多媒体指纹识别,用于多用户取证和安全性。

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摘要

Recent development in multimedia and network technologies has made possible the ubiquitous sharing and distribution of multimedia over networks. However, illegal alteration and unauthorized copying of multimedia data pose serious threats to multimedia security and intellectual property rights, especially considering the ease manipulation of digital data. Therefore, it is critical to secure and protect multimedia content, and to ensure the integrity of rights by authorized users solely for intended purpose. Digital fingerprinting is an emerging technology to address post-delivery content protection and to enforce digital rights. In digital fingerprinting, unique identification information is embedded in each distributed copy, and is used to trace and identify the source of illicit copies. Such a traitor tracing is a fundamental problem in multimedia forensics, as well as an important tool for enforcing digital rights.; This thesis addresses various issues in multimedia fingerprinting. We first investigate the order statistics based nonlinear collusion attacks on digital fingerprinting, and analyze their effectiveness in defeating the fingerprinting systems. We also compare the performance of several commonly used detection statistics under collusion. We then examine the impact of scalable video coding and transmission on digital fingerprinting systems and collusion attacks. We analyze the effectiveness of the collusion attacks under the constraints that all colluders have equal probability of detection, and analyze the collusion resistance of scalable fingerprinting systems. We then consider the problem of traitors within traitors in digital fingerprinting, in which some selfish colluders wish to minimize their own risk of being captured while still profiting from the illegal redistribution of multimedia. We investigate the possible strategy by the selfish colluders to reduce probability of detection, and analyze their performance under the quality constraints. We also investigate the possible countermeasures by other colluders to protect their own interest. Finally, we investigate the secure distribution of fingerprinted copies for video streaming applications, and propose two secure fingerprint multicast schemes. We analyze their performance, including the communication cost and the robustness against collusion attacks, and discuss the tradeoff between the bandwidth efficiency and computation complexity.
机译:多媒体和网络技术的最新发展使得在网络上无处不在的多媒体共享和分发成为可能。但是,多媒体数据的非法更改和未经授权的复制对多媒体安全性和知识产权构成了严重威胁,特别是考虑到数字数据的易操作性。因此,保护​​和保护多媒体内容以及确保授权用户仅出于预期目的的权利完整性至关重要。数字指纹识别是一种新兴技术,旨在解决交付后内容的保护并强制执行数字版权。在数字指纹识别中,唯一的标识信息嵌入每个分布式副本中,并用于跟踪和标识非法副本的来源。这种叛徒追踪是多媒体取证中的一个基本问题,也是执行数字版权的重要工具。本文解决了多媒体指纹识别中的各种问题。我们首先研究基于顺序统计的数字指纹的非线性共谋攻击,并分析其在击败指纹系统中的有效性。我们还比较了合谋下几种常用检测统计数据的性能。然后,我们研究了可伸缩视频编码和传输对数字指纹系统和共谋攻击的影响。我们在所有共谋者具有相同检测概率的约束下,分析了共谋攻击的有效性,并分析了可扩展指纹系统的共谋抵抗力。然后,我们考虑数字指纹识别中叛徒内部的叛徒问题,其中一些自私的合谋者希望最大程度地降低自己被捕获的风险,同时仍能从多媒体的非法重新分配中获利。我们调查自私合谋者可能采取的策略,以减少检测的可能性,并在质量约束下分析其性能。我们还将调查其他合谋者为保护自己利益而可能采取的对策。最后,我们研究了用于视频流应用程序的指纹副本的安全分发,并提出了两种安全的指纹多播方案。我们分析了它们的性能,包括通信成本和针对共谋攻击的鲁棒性,并讨论了带宽效率与计算复杂性之间的权衡。

著录项

  • 作者

    Zhao, Hong.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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