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Information hiding in digital images: Watermarking and steganography.

机译:隐藏在数字图像中的信息:水印和隐写术。

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Information hiding in multimedia data has drawn a lot of attention in recent years. A message is hidden in digital images, video and audio in an imperceptible manner so as not to interfere with the normal usage of these host media files while its existence can be helpful for some interesting applications. The hidden information related to content protection is usually termed Digital Watermark. The recent proliferation of the information-hiding research mostly comes from the development of digital watermarking techniques to meet the pressing need of content protection. The other interesting application is to transmit a large volume of data covertly in a multimedia file via information hiding. The objective in this application is to conceal the very existence of the hidden information using the innocuous multimedia data as a camouflage. Data hiding under this scenario is often termed Steganography, which literally means “covered writing.”; In this research, we focus on information hiding in digital images. The dissertation consists of two major parts. In the first part, we investigate information hiding in the state-of-the-art still image codec, JPEG-2000. A joint compression/watermarking scheme is proposed for the copyright protection purpose. Next, we consider steganography in JPEG-2000. Algorithms are developed to ensure that a high volume of data can be hidden reliably in JPEG-2000 compressed images.; In the second part, we aim at solving a very challenging problem in digital image watermarking, i.e., synchronized detection under geometrical modifications. In order to derive a robust watermarking scheme resilient to affine transformations, we propose to embed a structural grid signal into digital images for synchronized watermark detection. A spatial-frequency composite watermarking scheme is designed so that the watermark can survive attacks such as rotation, scaling and cropping; etc. A perceptual watermarking scheme using block-based DCT methodology is also developed. It turns out that grid embedding/detection is of great help in developing generalized block-based watermarking as well. Finally, the dissertation ends with some concluding remarks and some future research topics as an extension of our current research.
机译:隐藏在多媒体数据中的信息近年来引起了很多关注。消息以不易察觉的方式隐藏在数字图像,视频和音频中,以免干扰这些主机媒体文件的正常使用,而消息的存在对于某些有趣的应用程序可能会有所帮助。与内容保护有关的隐藏信息通常称为数字水印。信息隐藏研究的最新发展主要来自数字水印技术的发展,以满足内容保护的迫切需求。另一个有趣的应用是通过信息隐藏秘密地在多媒体文件中传输大量数据。本申请的目的是使用无害的多媒体数据作为伪装来隐藏隐藏信息的存在。在这种情况下隐藏的数据通常称为隐写术,字面意思是“隐蔽的写作”。在这项研究中,我们专注于隐藏在数字图像中的信息。论文主要分为两个部分。在第一部分中,我们研究隐藏在最新的静态图像编解码器JPEG-2000中的信息。为了版权保护的目的,提出了一种联合压缩/水印方案。接下来,我们考虑JPEG-2000中的隐写术。开发算法以确保在JPEG-2000压缩图像中可以可靠地隐藏大量数据。在第二部分中,我们旨在解决数字图像水印中一个非常具有挑战性的问题,即,即,几何修改下的同步检测。为了得出可抵抗仿射变换的鲁棒水印方案,我们建议将结构化网格信号嵌入数字图像中以进行同步水印检测。设计了一种空间频率复合水印方案,使水印能够抵抗旋转,缩放和裁剪等攻击;还开发了使用基于块的DCT方法的感知水印方案。事实证明,网格嵌入/检测在开发通用的基于块的水印方面也有很大帮助。最后,本文以一些总结性结论和一些未来的研究主题作为我们当前研究的延伸。

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