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首页> 外文期刊>Multimedia Tools and Applications >Hamming code and logistic-map based pixel-level active forgery detection scheme using fragile watermarking
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Hamming code and logistic-map based pixel-level active forgery detection scheme using fragile watermarking

机译:汉明码和基于逻辑地图的基于像素级主动伪造检测方案,使用脆弱的水印

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摘要

In this work, an active forgery detection scheme is proposed to locate the tampered region from a forged digital image. In this regard, an authentication code is formed and subsequently, the same is concealed into each pixel for the realization of a fragile watermarked image. In an active forgery detection procedure, the extracted authentication code from the fragile watermarked image is considered to detect the tampered region properly. The main goal of this work is to generate a secure authentication code for preventing the attackers from purposely altering the embedded code to match the tampered image contents as well as to cause less visual distortion after the construction of the fragile watermarked image. Initially, the authentication code for each pixel is computed using Hamming code from the first four most significant bits (MSBs) and subsequently, the same is considered to conceal into some least significant bits (LSBs) of that particular pixel. Generally, the LSB components are found visually insignificant so, the suggested pixel-level authentication code embedding procedure retains the high visual quality of the watermarked image. The proposed fragile watermarking is secured since the authentication code embedding procedure is realized using the logistic-map based generated secret parameters. The proposed scheme has been implemented and the results based on the input of several grayscale images are found satisfactory. In addition, several tampered images are considered to validate the proficiency of tampering detection of the proposed work. The obtained results demonstrate that the presented work is effectively capable to detect the tampered region even in pixel-level from the forged digital image content and also the results are found comparable to some related works.
机译:在这项工作中,提出了一种积极的伪造检测方案来定位来自伪造数字图像的篡改区域。在这方面,形成和随后形成认证码,将其隐藏到每个像素中以实现脆弱的水印图像。在主动伪造检测过程中,认为来自脆弱水印图像的提取的认证码被认为是正确检测篡改区域。这项工作的主要目标是生成安全认证码,以防止攻击者故意更改嵌入式代码以匹配篡改的图像内容,以及在构造脆弱的水印图像之后造成较少的视觉失真。最初,使用来自前四个最高有效位(MSB)的HAMPing码来计算每个像素的认证码,随后,认为该特定像素的一些最低有效位(LSB)被认为是相同的。通常,LSB组件在视觉上发现,所以,建议的像素级认证码嵌入过程保留了水印图像的高视觉质量。由于使用基于逻辑图的生成的秘密参数实现了认证码嵌入过程,因此确保了所提出的脆弱水印。已经实施了所提出的方案,并找到了基于几个灰度图像输入的结果令人满意。此外,考虑了几种篡改图像验证了篡改检测的拟议工作的熟练程度。所获得的结果表明,即使从伪造的数字图像内容的像素级别,所呈现的工作也能够有效地检测篡改区域,并且还发现结果与一些相关的作品相当。

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