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Using the discrete wavelet transform to Haar'd code a blind digital watermark.

机译:使用离散小波变换对Haar'd编码盲数字水印。

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摘要

Safeguarding creative content in a digital form has become increasingly difficult. It is progressively easier to copy, modify and redistribute digital media, which causes great declines in business profits. For example, the International Federation of the Phonographic Industry estimates that in 2001 the worldwide sales of pirated music CDs were 475 million US dollars. While a large amount of time and money is committed to creating intellectual property, legal means have not proven to be sufficient for the protection of this property.Digital watermarking is a steganographic technique that has been proposed as a possible solution to this problem. A digital watermark hides embedded information about the origin, status, owner and/or destination of the data, often without the knowledge of the viewer or user.This dissertation examines a technique for digital watermarking which utilizes properties of the Discrete Wavelet Transform (DWT). Research has been done in this field, but which wavelet family is superior is not adequately addressed. This dissertation studies the influence of the wavelet family when using a blind, nonvisible watermark in digital media. The digital watermarking algorithm uses a database of multiple images with diverse properties. Various watermarks are embedded. Eight different families of wavelets with dissimilar properties are compared. How effective is each wavelet? To objectively measure the success of the algorithm, the influence of the mother wavelet, the imperceptibility of the embedded watermark and the readability of the extracted watermark, the Peak Signal-to-Noise Ratio and the Image Quality Index for each wavelet family and image are obtained. Two common categories of digital watermarking attacks are removing the watermark and rendering the watermark undetectable. To simulate and examine the effect of attacks on the images, noise is added to the image data. Also, to test the effect of reducing an image in size, each image containing the embedded watermark is compressed.The dissertation asks the questions: "Is the wavelet family chosen to implement the algorithm for a blind, nonvisible watermark in digital images of consequence? If so, which family is superior?" This dissertation conclusively shows that the Haar transform is the best for blind, non-visible digital watermarking.INDEX WORDS: Dissertation, Graduate degree, Georgia State University, Watermark, Digital watermarking, Image watermarking, Wavelet, Discrete Wavelet Transform
机译:以数字形式保护创意内容变得越来越困难。复制,修改和重新分发数字媒体变得越来越容易,这导致业务利润大幅下降。例如,国际唱片业联合会估计,2001年盗版音乐CD的全球销售额为4.75亿美元。尽管花费大量时间和金钱来创建知识产权,但事实证明,法律手段不足以保护该知识产权。数字水印是一种隐写技术,已被提议作为解决此问题的一种可能方法。数字水印通常隐藏隐藏的有关数据的来源,状态,所有者和/或目的地的信息,而通常不会引起查看者或用户的了解。本文研究了一种利用离散小波变换(DWT)属性的数字水印技术。 。在该领域已经进行了研究,但是哪个小波家族更好呢?本文研究了数字媒体中使用盲,不可见水印时小波家族的影响。数字水印算法使用具有不同属性的多个图像的数据库。嵌入了各种水印。比较了八种不同性质的小波家族。每个小波的效果如何?为了客观地衡量算法的成功性,分别考虑了子小波的影响,嵌入水印的不易察觉性和提取水印的可读性,每个小波家族和图像的峰值信噪比和图像质量指标。获得。数字水印攻击的两种常见类别是删除水印和使水印无法检测。为了模拟和检查攻击对图像的影响,将噪声添加到图像数据中。另外,为了测试缩小图像的效果,压缩了每个包含嵌入水印的图像。论文提出了以下问题:“是否选择了小波族在数字图像中实现盲,不可见水印算法?如果是这样,哪个家庭优越?”论文最终证明了Haar变换最适合盲,不可见的数字水印。索引词:论文,研究生,佐治亚州立大学,水印,数字水印,图像水印,小波,离散小波变换

著录项

  • 作者

    Brannock, Evelyn.;

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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