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Perceptual Video Hashing for Content Identification and Authentication

机译:用于内容识别和身份验证的感知视频哈希

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摘要

Perceptual hashing has been broadly used in the literature to identify similar contents for video copy detection. It has also been adopted to detect malicious manipulations for video authentication. However, targeting both applications with a single system using the same hash would be highly desirable as this saves the storage space and reduces the computational complexity. This paper proposes a perceptual video hashing system for content identification and authentication. The objective is to design a hash extraction technique that can withstand signal processing operations on one hand and detect malicious attacks on the other hand. The proposed system relies on a new signal calibration technique for extracting the hash using the discrete cosine transform (DCT) and the discrete sine transform (DST). This consists of determining the number of samples, called the normalizing shift, that is required for shifting a digital signal so that the shifted version matches a certain pattern according to DCT/DST coefficients. The rationale for the calibration idea is that the normalizing shift resists signal processing operations while it exhibits sensitivity to local tampering (i.e., replacing a small portion of the signal with a different one). While the same hash serves both applications, two different similarity measures have been proposed for video identification and authentication, respectively. Through intensive experiments with various types of video distortions and manipulations, the proposed system has been shown to outperform related state-of-the art video hashing techniques in terms of identification and authentication with the advantageous ability to locate tampered regions.
机译:感知哈希技术已在文献中广泛使用,以标识用于视频复制检测的相似内容。它也已被用来检测视频认证的恶意操作。但是,非常需要针对使用相同散列的单个系统将两个应用程序作为目标,因为这样可以节省存储空间并降低计算复杂性。本文提出了一种用于内容识别和认证的感知视频哈希系统。目的是设计一种哈希提取技术,该技术一方面可以承受信号处理操作,另一方面可以检测恶意攻击。所提出的系统依靠一种新的信号校准技术来使用离散余弦变换(DCT)和离散正弦变换(DST)提取哈希。这包括确定数字信号移位所需的样本数量(称为归一化移位),以使移位后的版本根据DCT / DST系数匹配特定模式。校准思想的基本原理是,归一化移位抵抗了信号处理操作,同时表现出对局部篡改的敏感性(即,用不同的信号替换一小部分信号)。尽管相同的哈希服务于这两种应用,但已针对视频识别和身份验证分别提出了两种不同的相似性度量。通过对各种类型的视频失真和处理进行的深入实验,该系统在识别和认证方面表现出优于相关的最新技术的视频哈希技术,并且具有定位篡改区域的有利能力。

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