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RGB color image watermarking using Discrete Wavelet Transform DWT technique and 4-bits plan by histogram stretching

机译:使用离散小波变换DWT技术和直方图拉伸进行4位计划的RGB彩色图像水印

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摘要

Recently, access to multimedia data has become much easier due to rapid growth of the internet; everyone could access these data, and use them for personal or commercial purposes, for these reason copy right problems appeared. Digital watermarking techniques are used to protect the copyrights of multimedia data by embedding secret information in the host media, for example, embedding in images, audios, or videos. Many watermarking techniques have been proposed in the literature to solve the copyright violation problems, but most of these techniques failed to satisfy both imperceptibility and robustness requirements. In this thesis, adaptive color image watermarking technique is proposed. The proposed technique involves two main stages, which are, embedding, and extraction. Before embedding stage, a host image is converted from RGB to YCbCr color space to preserve imperceptibility and robustness, then, Cb component is extracted and partitioned into four quadrants. In the embedding stage select Cb component to apply DWT to decompose the cover image to four frequencies which are LL, HL, LH and HH, then selected the LH2 band to embedding the watermark image, while watermark image will convert to 4-bits plane to compress the image to ensure the capacity. In the extracting stage, DWT is used again to decompose the selected quadrant of watermarked image, and finally the watermark image is extracted. To prove the efficiency of proposed technique, six types of attacks are applied on watermarked image namely, Gaussian noise, Salt & Pepper Noise, Sharpening filter, Median filter, Rotation, and JPEG Compression. The experiments results have shown that the proposed technique successfully withstood against all the mentioned attacks, and at the same time preserved the watermarked image quality.
机译:最近,由于互联网的迅速发展,对多媒体数据的访问变得更加容易。由于这些原因,每个人都可以访问这些数据,并将其用于个人或商业目的,因此出现了版权问题。数字水印技术用于通过将秘密信息嵌入到主机媒体中(例如,嵌入到图像,音频或视频中)来保护多媒体数据的版权。在文献中已经提出了许多加水印技术来解决侵犯版权的问题,但是这些技术中的大多数不能同时满足不可感知性和鲁棒性的要求。本文提出了一种自适应彩色图像水印技术。所提出的技术涉及两个主要阶段,即嵌入和提取。在嵌入阶段之前,将宿主图像从RGB转换为YCbCr色彩空间,以保留不可见性和鲁棒性,然后提取Cb分量并将其划分为四个象限。在嵌入阶段,选择Cb分量应用DWT将覆盖图像分解为LL,HL,LH和HH四个频率,然后选择LH2频段嵌入水印图像,而水印图像将转换为4位平面以压缩图像以确保容量。在提取阶段,再次使用DWT分解水印图像的所选象限,最后提取水印图像。为了证明所提出技术的有效性,对水印图像应用了六种类型的攻击:高斯噪声,盐和胡椒噪声,锐化滤波器,中值滤波器,旋转和JPEG压缩。实验结果表明,所提出的技术能够成功抵御所有提到的攻击,同时保持了水印图像质量。

著录项

  • 作者

    Kadhim Karrar Abdul Ameer;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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