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Performance Study and Improvement on ECC-based Binary Anti-Collusion Forensic Code for Multimedia

机译:多媒体基于ECC的二元反串行法医规范的绩效研究与改进

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Digital forensic coding is an emerging technology that offers proactive post-delivery protection of multimedia. Multi-user collusion attacks are powerful attacks against digital forensic marking, where groups of attackers collectively mount attacks to attenuate the identifying marks. The colluders usually perform post-processing, such as compression, on the colluded multimedia content before redistribution. The post-processing may introduce errors in the detected bits of the forensic code and represents a new challenge to the forensic code design. In this paper, we first study the performance of a simple extension from ECC-based forensic marking to create a binary forensic code, and then improve its performance to provide post-processing resistance. This new code is constructed by concatenating an orthogonal binary code with a large-distance Reed-Solomon code. The simulation results show that our binary forensic code design can achieve 100% detection rate when the number of colluders is less than 20 and up to 32% of the colluded forensic code is changed during the post-processing.
机译:数字法医编码是一种新兴技术,可提供多媒体的主动交付后保护。多用户勾结攻击是针对数字法医标记的强大攻击,其中攻击者组共同安装攻击以衰减识别标记。勾结者通常在重新分配之前在勾结的多媒体内容上执行后处理,例如压缩。后处理可以在检测到的法医代码的比特中引入错误,并且对法医代码设计表示新的挑战。在本文中,我们首先研究了从基于ECC的取证标记的简单扩展的性能,以创建二进制法医代码,然后提高其性能以提供后处理电阻。这种新代码是通过将正交二进制代码连接到具有大距离簧片级别代码的正交二进制代码来构建。仿真结果表明,当在后处理期间,当拼接器的数量小于20时,我们的二进制法医代码设计可以实现100%的检测率,并且在后处理期间更改了最多32%的拼起法医代码。

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