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Practical analysis of watermarking capacity

机译:水印容量的实用分析

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摘要

Digital watermarking embedding is a hot research field of image processing. Digital watermarking is only possible because our vision system is not perfect. A number of applications have emerged such as copyright notification, time stamp and automated monitoring. There have been ingenious works on watermarking capacity, which all assume the attack distortion are Gaussian additive distribution. We argue that these results are beautiful but not practical. It is hard to classify different attacking methods into a uniform format (especially as Gaussian distribution). In the other hand, the capacity of a given image's information is an interesting and important topic. In stead of conventional analysis based on non-precise assumption of attack distortion, this paper concentrate on the problem how much information that image can carry without much visibility distortion. Our work is based on wavelet transform and mean-squared error since we believe they are representative measure for most work. Comparing with the former work on the watermarking capacity, this paper pays more attention to the influence on capacity of widely used technique such as spread spectrum. In the last part of this paper, we discuss of future tends of new watermarking algorithm and their influence of capacity.
机译:数字水印嵌入是图像处理的研究热点。仅由于我们的视觉系统不完善,才可能进行数字水印处理。出现了许多应用程序,例如版权通知,时间戳和自动监视。关于水印能力已有许多独创的著作,所有这些著作都假定攻击失真是高斯加性分布。我们认为这些结果不错,但不实用。很难将不同的攻击方法分类为统一的格式(尤其是高斯分布)。另一方面,给定图像信息的容量是一个有趣且重要的主题。代替基于攻击精确度的非精确假设的常规分析,本文重点关注的问题是图像可以承载多少信息而没有太多可见度失真。我们的工作基于小波变换和均方误差,因为我们认为它们是大多数工作的代表指标。与以前的水印容量研究相比,本文更加关注扩展频谱等技术对容量的影响。在本文的最后部分,我们讨论了新的水印算法的未来趋势及其对容量的影响。

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