基于变换域的同步双水印音频水印方案

A. Elshazly, M. E. Nasr, M. Fuad, F. A. Abd El-Samie
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引用次数: 13

摘要

随着计算机和互联网技术的飞速发展,数字水印技术对解决数字媒体的版权保护、数据认证、内容识别、分发和复制等问题产生了浓厚的兴趣。近年来,数字音频信号的保护受到了研究人员的高度重视。提出了一种基于离散小波变换(DWT)、奇异值分解(SVD)和量化指标调制(QIM)的音频水印方案,并在双加密水印图像或标志中嵌入同步码。该算法首先将原始音频信号分割成小块,将每个小块分解为两级离散小波变换,然后对低频子带近似系数进行SVD分解,得到对角矩阵。利用量化索引调制(QIM)将准备好的水印和同步码位流嵌入到对角矩阵中。然后,应用ISVD和IDWT得到带水印的音频信号。水印可以在不知道原始音频信号的情况下盲目提取。实验结果表明,该算法具有良好的透明性和不可感知性,对常见的音频信号处理攻击具有较强的鲁棒性。实现了高水印有效载荷,并进行了性能分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronized double watermark audio watermarking scheme based on a transform domain for stereo signals
Digital watermarking technology is interested in solving the problem of copyright protection, data authentication, content identification, distribution, and duplication of the digital media due to the great developments in computers and Internet technology. Recently, protection of digital audio signals has taken a great attention from the researchers. This paper proposed a new audio watermarking scheme based on Discrete Wavelet Transform (DWT), Singular Value Decomposition (SVD), and Quantization Index Modulation (QIM) with synchronization code embedded within double encrypted watermark images or logos into stereo audio signal. In the algorithm, an original audio signal is split into blocks and each block is decomposed into two levels discrete wavelet transform, and then the approximate low frequency sub-band coefficients are decomposed by the SVD transform, obtaining a diagonal matrix. The prepared watermarking and synchronization code bit stream is embedded into the diagonal matrix using Quantization Index Modulation (QIM). After that, we apply ISVD and IDWT to obtain the watermarked audio signal. The watermark can be blindly extracted without knowledge of the original audio signal. Experimental results show that the transparency and imperceptibility of the proposed algorithm is satisfactory, and robustness is strong against popular audio signal processing attacks. High watermark payload is achieved and performance analysis is presented.
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