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Design and Implementation of Highly Efficient Digital Watermarking Prototype for Securing Copyright and Authentication of Satellite Imagery

机译:保障卫星图像版权和认证的高效数字水印原型的设计与实现

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Satellite imagery is considered as a powerful tool to map and monitor natural and man-made resources changes globally. Moreover, it greatly contributes to boost scientific researches, supports decision making process regarding important issues and has a tremendous potential to improve economic outcomes. However, the dramatic growth in the field of communication and the internet allows satellite imagery to be easily distributed, tampered and duplicated by unauthorized users. As a result, the protection of its intellectual property has become of a great demand. To overcome this issue, the concept of "watermarking'" has been introduced as a potential solution for copyright protection and ownership authentication of satellite images. The principle of watermarking here is based on embedding a pattern of invisible identification information (for instance logo) into a satellite image so that it can be detected or extracted later to identify the copyright owner. Unlike other sorts of data, satellite images are complex in nature and contain very sensitive information which can be easily degraded by inserting additional information. This means that applying watermarking technique to satellite images would affect negatively on its quality, which totally interferes with the main purpose of building high resolution satellites. Thus, a proper technique should be developed to overcome this problem. Recently, digital watermarking has been a hot research topic in academia and industry, where a wide number of schemes have been proposed and evaluated. This paper deals with the design, implementation and evaluation of a novel watermarking model for preserving the copyright and authentication of DubaiSat-2 images. The proposed algorithm must be robust against intentional and non-intentional attacks such as compression, scaling, rotation, filtering, cropping, contrast enhancement etc. In addition, the algorithm should be fragile in such a way that it should be very sensitive to any minor tampering/modification and it should precisely detect tampered area on the satellite image. Moreover, the watermark should be imperceptible to the human eye. Five quality indices are used to assess the performance of the proposed prototype, which consist of the peak signal to noise ratio (PSNR), wavelet domain signal to noise ratio (WSNR), structure similarity index measurement (SSIM), normalized correlation (NC) and mean square error (MSE).
机译:卫星图像被认为是全球制图和监测自然和人为资源变化的有力工具。此外,它极大地促进了科学研究,为重要问题的决策过程提供了支持,并具有改善经济成果的巨大潜力。但是,通信和互联网领域的迅猛发展使得未经授权的用户可以轻松地分发,篡改和复制卫星图像。结果,对它的知识产权的保护已成为巨大的需求。为了克服这个问题,引入了“加水印”概念,作为版权保护和卫星图像所有权认证的潜在解决方案。这里的加水印原理是基于将不可见标识信息(例如徽标)的图案嵌入到卫星图像中,以便以后可以对其进行检测或提取以标识版权所有者。与其他类型的数据不同,卫星图像本质上是复杂的,并且包含非常敏感的信息,可以通过插入其他信息轻松地将其降级​​。这意味着将水印技术应用于卫星图像会对其质量产生负面影响,这完全干扰了构建高分辨率卫星的主要目的。因此,应该开发一种适当的技术来克服这个问题。近年来,数字水印技术已成为学术界和工业界研究的热点,提出了许多方案并对其进行了评估。本文讨论了一种新型的水印模型的设计,实现和评估,该模型可以保护DubaiSat-2图像的版权和认证。所提出的算法必须对诸如压缩,缩放,旋转,滤波,裁剪,对比度增强等有意和无意攻击具有鲁棒性。此外,该算法应以对任何未成年人非常敏感的方式易碎。篡改/修改,它应精确检测卫星图像上的篡改区域。而且,水印对于人眼来说应该是不可察觉的。五个质量指标用于评估所提出原型的性能,包括峰信噪比(PSNR),小波域信噪比(WSNR),结构相似性指标测量(SSIM),归一化相关(NC)和均方误差(MSE)。

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