Investigation of the Properties of the Coefficients of the Discrete Cosine Transformation as the Basis of the Method of Detection of Digital Image Integrity Violation

A. Kobozieva, D. Maevsky, Olena Simonova
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Abstract

One of the most common representations of information today are digi-tal images, unauthorized changes of which can lead to negative conse-quences for an individual, institution, firm, and the state as a whole, which makes the detection of digital image integrity violation one of the most ur-gent tasks of information security. The main drawback of the existing ex-pert methods is their focus on detecting the results of a specific disruptive action, but in practice the expert often does not have information about the specifics of an attack on a digital image, while his set of tools is always limited, which can lead to a situation where the investigated digital image is erroneously recognized as original. The first «defense line» here should be methods that are effective regardless of the type of disruptiveaction, i.e. universal. At present, there are a very small number of such methods in open sources; most of them are not free from shortcomings, the main of which is a significant decrease in efficiency in conditions of minor disturb-ances. The aim of the paper is to develop a theoretical basis for an effective universal method of detection of digital image integrity violation, in par-ticular, in conditions of minor disturbances. In the course of achieving the aim of the paper: the justified expediency of using a block approach when organizing an examination of the integrity of a digital image; the area of discrete cosine transformation (DCP) of the block is chosen as the area of examination; justified selection of specific DCP coefficients for organizing the detection of violations of the integrity of digital images, the values of which do not depend on the value of the quality coefficient used when ob-taining the original image, as well as on the specific type of digital images; the difference in the nature ofchanges in the selected formal parameters during re-saving of lossy digital images, depending on whether it is origi-nal or non-original, is investigated. The obtained results of theoretical stud-ies, which are confirmed by the results of computational experiments, con-stitute the theoretical basis for the development of an effective universal method of examination of the integrity of digital images, in particular, in conditions of minor disturbances.
基于离散余弦变换系数性质的数字图像完整性破坏检测方法研究
当今信息最常见的表现形式之一是数字图像,未经授权的更改可能导致个人、机构、企业和整个国家的负面后果,这使得检测数字图像完整性违规成为信息安全最紧迫的任务之一。现有专家方法的主要缺点是它们专注于检测特定破坏性行为的结果,但在实践中,专家通常没有关于数字图像攻击的具体信息,而他的工具集总是有限的,这可能导致被调查的数字图像被错误地识别为原始图像的情况。这里的第一道“防线”应该是无论破坏性行为的类型如何都有效的方法,即通用的方法。目前,这种方法在开源中数量非常少;它们中的大多数并非没有缺点,其中主要是在轻微扰动条件下效率显著降低。本文的目的是发展一个有效的通用方法检测数字图像完整性侵犯的理论基础,特别是在轻微干扰的条件下。在实现本文目标的过程中:在组织对数字图像完整性的检查时,使用块方法的合理权宜之计;选取块的离散余弦变换(DCP)面积作为检测面积;合理选择特定的DCP系数,以组织对数字图像完整性的侵犯进行检测,其值不依赖于获取原始图像时使用的质量系数的值,也不依赖于特定类型的数字图像;研究了在有损数字图像的重新保存过程中,所选择的形式参数的变化性质的差异,这取决于它是原始的还是非原始的。理论研究的结果得到了计算实验结果的证实,为开发一种有效的通用方法来检查数字图像的完整性,特别是在小干扰条件下的完整性,奠定了理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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