数字水印中的最低有效位(LSB)和随机右圆移位(RRCF)

M. Kurdi, I. Elzein, A. Zeki
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引用次数: 4

摘要

数字水印是一种用于在互联网上分发内容的认证技术。这种方法是非常需要的,因为高容量的数字记录设备的激增,这加剧了对内容版权保障的担忧[1]。数字水印是保护图像、音频、视频和数据的宝贵机制,它们将成为促进电子商务的重要手段。任何认真保护和分发其内容和产品的公司都必须使用数字水印。数字水印和隐写术被认为是许多作者最感兴趣的研究和发展领域。在本文中,我们在数字水印中使用了最低有效位(LSB)和随机右圆移位(RRCF)。使用LSB的原因是人眼不易察觉,而且它对图像的畸变很小。为了模拟我们的算法,我们使用MATLAB使用最低有效位(LSB)和随机右圆移位(RRCF)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Least Significant Bit (LSB) and Random Right Circular Shift (RRCF) in digital watermarking
Digital watermarking is an authentication technique for distribution of content over the Internet. Such a method is highly desired due to the proliferation of high-capacity, digital recording contrivances which have fueled incremented concerns over copyright auspice of content [1]. Digital Watermarks are valuable mechanisms for protecting image, audio, video, and data and they are withal becoming a consequential implement in facilitating e-commerce. Any company that is earnest about safely protecting and distributing their content and products must use digital watermarks. Digital watermarking and steganography is considered as the most interesting field of research and development for many authors. In this article, we use Least Significant Bit (LSB) and Random Right Circular Shift (RRCF) in digital watermarking. LSB is used because it is not noticeable by human eyes and of its minor distortion of the image. For simulation of our algorithm, we apply MATLAB using Least Significant Bit (LSB) and Random Right Circular Shift (RRCF).
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