A blind wavelet-based watermarking with detail-subband coefficients prediction

碩士 === 長庚大學 === 電機工程學研究所 === 96 === Recently, the wavelet transform is widely used in multimedia signal processing applications. To provide security solution, the digital watermarking is involved. This study presents a blind wavelet-based watermarking which cooperates with the Human Visual System (H...

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Main Authors: Yu-Quan Tzeng, 曾昱筌
Other Authors: J. D. Lee
Format: Others
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/02642324963306693305
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spelling ndltd-TW-096CGU054420242016-05-13T04:15:01Z http://ndltd.ncl.edu.tw/handle/02642324963306693305 A blind wavelet-based watermarking with detail-subband coefficients prediction 小波轉換高頻係數預測為基礎之不需原始資訊數位浮水印技術 Yu-Quan Tzeng 曾昱筌 碩士 長庚大學 電機工程學研究所 96 Recently, the wavelet transform is widely used in multimedia signal processing applications. To provide security solution, the digital watermarking is involved. This study presents a blind wavelet-based watermarking which cooperates with the Human Visual System (HVS) embedding watermarks into detail-subband coefficients. Since the imperceptibility is the most significant issue in watermarking, the approximate band is maintained unchanged, while the other detail subbands are modified to carry information. The perceptual embedded weights for all subbands are determined based on the Just Noticeable Distortion (JND) criterion. The strength of the modification is investigated to provide a compromised result between robustness and image quality. In the decoder, the Least-Mean-Square (LMS) is involved to predict the original detail subbands coefficients and then extract the embedded watermarks. As documented in experimental results, the proposed method provides good robustness and excellent image quality. J. D. Lee 李建德 2008 學位論文 ; thesis 94
collection NDLTD
format Others
sources NDLTD
description 碩士 === 長庚大學 === 電機工程學研究所 === 96 === Recently, the wavelet transform is widely used in multimedia signal processing applications. To provide security solution, the digital watermarking is involved. This study presents a blind wavelet-based watermarking which cooperates with the Human Visual System (HVS) embedding watermarks into detail-subband coefficients. Since the imperceptibility is the most significant issue in watermarking, the approximate band is maintained unchanged, while the other detail subbands are modified to carry information. The perceptual embedded weights for all subbands are determined based on the Just Noticeable Distortion (JND) criterion. The strength of the modification is investigated to provide a compromised result between robustness and image quality. In the decoder, the Least-Mean-Square (LMS) is involved to predict the original detail subbands coefficients and then extract the embedded watermarks. As documented in experimental results, the proposed method provides good robustness and excellent image quality.
author2 J. D. Lee
author_facet J. D. Lee
Yu-Quan Tzeng
曾昱筌
author Yu-Quan Tzeng
曾昱筌
spellingShingle Yu-Quan Tzeng
曾昱筌
A blind wavelet-based watermarking with detail-subband coefficients prediction
author_sort Yu-Quan Tzeng
title A blind wavelet-based watermarking with detail-subband coefficients prediction
title_short A blind wavelet-based watermarking with detail-subband coefficients prediction
title_full A blind wavelet-based watermarking with detail-subband coefficients prediction
title_fullStr A blind wavelet-based watermarking with detail-subband coefficients prediction
title_full_unstemmed A blind wavelet-based watermarking with detail-subband coefficients prediction
title_sort blind wavelet-based watermarking with detail-subband coefficients prediction
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/02642324963306693305
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