公共通信网抗作物和轮作攻击的鲁棒图像水印

A. Thahab, H. Shahadi
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引用次数: 1

摘要

在internet等公共通信网络中,用户可以方便地共享和访问图像、视频、音频等多媒体产品。在这些网络中,版权保护是证明产品所有权的关键问题。因此,隐藏不可见水印或标识的数字水印技术在解决版权问题方面发挥着重要作用。然而,任何人都可以访问多媒体产品,可以简单地使用这些产品。此外,还有专业攻击者可以在不损失多媒体产品可见性的情况下删除水印或标识,并声称对数字产品拥有所有权。本研究提出了一种仅允许授权用户使用水印图像的图像水印模型。该模型对作物和轮作攻击具有鲁棒性。基于所提出的嵌入方法,我们将其命名为“同心圆矩形”,该方法将数据从中心向外边界嵌入矩形中,以克服作物和轮作攻击。生成的水印图像被扭曲到任何用户都能识别的程度,但只有经过授权的用户才能获得高质量的水印图像。实验结果表明,该模型的峰值信噪比(PSNR)可以达到主图像大小的25%,且水印图像质量在40 dB以上。此外,该模型对水印图像(logo)进行了完全检索,直到加噪的信噪比达到10db时,水印图像仍具有识别的视觉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Image Watermarking Against Crop and Rotation Attacks for Public Communication Networks
In public communication networks such as the internet, users can easily share and access multimedia products such as images, videos, and audios. Copyright protection is a vital issue to prove the ownership of products in these networks. Consequently, digital watermarking that hide invisible watermark or logo plays a significant role in overcoming copyright issue. However, any person has access to multimedia products can simply use these products. Also, there are professional attackers can remove the watermark or logo without loss the visibility of the multimedia product and claim their ownership for the digital products. This study proposes an image watermarking model that only allows authorized users to use the watermarked image. This model is robust against crop and rotation attacks. It is based on the proposed embedding method that we named a "concentric rectangles", which embeds data in rectangles starting from the center toward outer boundary to overcome the crop and rotation attacks. The resulted watermarked image is distorted in such a way to be recognized by any user, but only the authorized one can obtain a high quality of the watermarked image. The experimental results of the proposed model show that the embedding capacity can reach up to 25% from the size of the host image with watermarked image quality above 40 dB in terms of peak signal to noise rotation (PSNR). Furthermore, the proposed model is fully retrieval for the watermark image (logo) and the logo still retrieved a with a recognized vision until 10 dB of signal to noise ratio of noise adding.
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