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Binary Forensic Code for Multimedia Signals: Resisting Minority Collusion Attacks

机译:多媒体信号的二进制取证代码:抵抗少数串通攻击

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Digital forensic marking is a technology to discourage unauthorized redistribution of multimedia signals by embedding a unique mark into each user's copy of the content. A powerful class of attacks on forensic marking is the collusion attack by a group of users. Recently, a new collusion attack, called the minority attack, has been proposed against forensic marking schemes with correlation-based detectors. Although this attack is not very effective on Gaussian-based forensic marking, it is quite powerful on removing the traces of users when the forensic marking is binary. In this paper, we first study the performance of an ECC-based binary forensic code under the minority attack and we model the additional processing, such as compression, applied on colluded copy as a binary symmetric channel. We confirm that the system can be defeated by a minority attack from only 3 colluders. To resist the minority attack, we propose a row-permuted binary orthogonal code to serve as the inner code for ECC-based forensic code, coupled with an adaptive detector. Experimental results show that the proposed scheme has a significantly improved resistance to a minority attack.
机译:数字取证标记是一种通过在每个用户的内容副本中嵌入唯一标记来阻止未经授权重新分配多媒体信号的技术。一组强大的针对法医标记的攻击是一组用户的共谋攻击。最近,针对基于关联的检测器的法医标记方案,提出了一种新的共谋攻击,称为少数攻击。尽管此攻击在基于高斯的取证标记上不是很有效,但是当取证标记为二进制时,它在删除用户痕迹方面非常强大。在本文中,我们首先研究了少数群体攻击下基于ECC的二进制取证代码的性能,并对附加处理(例如压缩)作为二进制对称通道应用在合谋复制上进行了建模。我们确认该系统可以通过仅3个合谋者的少数攻击而被击败。为了抵抗少数攻击,我们提出了一种行置换二进制正交码作为基于ECC的取证码的内部码,并结合了自适应检测器。实验结果表明,该方案对少数民族攻击具有明显的抵抗力。

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