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Efficient Non-Interactive Zero-Knowledge Watermark Detector Robust to Sensitivity Attacks

机译:高效的非交互式零知识水印检测器,对敏感性攻击具有鲁棒性

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Zero-knowledge watermark detectors presented to date are based on a linear correlation between the asset features and a given secret sequence. This detection function is susceptible of being attacked by sensitivity attacks, for which zero-knowledge does not provide protection. In this paper, an efficient zero-knowledge version of the Generalized Gaussian Maximum Likelihood (ML) detector is introduced. The inherent robustness that this detector presents against sensitivity attacks, together with the security provided by the zero-knowledge protocol that conceals the keys that could be used to remove the watermark or to produce forged assets, results in a robust and secure protocol. Two versions of the zero-knowledge detector are presented; the first one makes use of two new zero-knowledge proofs for modulus and square root calculation; the second is an improved version applicable when the spreading sequence is binary, and it has minimum communication complexity. Completeness, soundness and zero-knowledge properties of the developed protocols are proved, and they are compared with previous zero-knowledge watermark detection protocols in terms of receiver operating characteristic, resistance to sensitivity attacks and communication complexity.
机译:迄今为止,零知识水印检测器基于资产特征与给定秘密序列之间的线性相关性。此检测功能易受敏感度攻击的攻击,对此,零知识无法提供保护。本文介绍了一种高效的零知识版本的广义高斯最大似然(ML)检测器。该检测器具有抵御敏感度攻击的固有鲁棒性,以及由零知识协议所提供的安全性(该隐秘协议隐藏了可用于删除水印或产生伪造资产的密钥)导致了鲁棒和安全的协议。提出了两种版本的零知识检测器:第一个利用两个新的零知识证明进行模数和平方根计算;第二个是改进的版本,适用于扩展序列为二进制且通信​​复杂度最低的情况。证明了所开发协议的完整性,稳健性和零知识特性,并将它们与以前的零知识水印检测协议进行了比较,包括接收器的工作特性,对敏感性攻击的抵抗力和通信复杂性。

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