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Audio watermarking scheme based on embedding strategy in low frequency components with a binary image

机译:基于嵌入策略的低频分量二进制图像音频水印方案

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With the recent development of information technology and computer network, digital format of data has become more and more popular. However, a major problem faced by digital data providers and owners is protecting data from unauthorized copying and distribution. As a solution to the problem, digital watermark technology is now attracting attention as new method of protection against said unauthorized copying and distribution. The aim of the digital audio watermarking is to take prespecified data that carries certain information and hide it within the audio stream such that it is not audible to the human ear (i.e., transparent) but at the same time renders the file more resistant to removal (i.e., robust). In this paper, we propose a new method for embedding digital watermarks into audio signals in low frequency components, which method mitigates these and other related shortcomings. The proposed method uses the wavelet transform constructed by lifting-based wavelet transform (LBWT) in order to provide a fast implementation between watermark embedding and extraction parts. In the first stage of the proposed method, the original audio host signal is converted to a wavelet domain using LBWT. The signal is thus decomposed into low and high frequency components. Approximation coefficients correspond to low frequency components of the signal. Next, the watermark generated by pseudorandom numbers is embedded into wavelet approximation coefficients of the segmented host audio signal depending on the binary value of the binary image. The reason for embedding the watermark in the low frequency components is that these components' energy is greater than that of high frequency components in such a way that the watermark is inaudible; therefore, it should not alter the audible content and should not be easy to remove. The proposed method uses a binary image to decide whether or not the watermark generated by pseudorandom numbers is embedded in the audio host signal. To evaluate the performance of the proposed audio watermarking method, subjective and objective quality tests including bit error rate (BER) and signal-to-noise ratio (SNR) are conducted. The tests' results show that the proposed method yields a high recovery rate after attacks by commonly used audio data manipulations such as low-pass filtering, requantization, resampling and MP3 compression. (C) 2008 Elsevier Inc. All rights reserved.
机译:随着信息技术和计算机网络的最新发展,数据的数字格式变得越来越流行。但是,数字数据提供商和所有者面临的主要问题是保护数据免遭未经授权的复制和分发。作为该问题的解决方案,数字水印技术作为防止所述未经授权的复制和分发的新方法正受到关注。数字音频水印的目的是获取携带某些信息的预先指定的数据,并将其隐藏在音频流中,以使人耳听不到(即透明),但同时使文件更耐移除(即健壮)。在本文中,我们提出了一种将数字水印嵌入低频分量的音频信号中的新方法,该方法可以缓解这些缺陷和其他相关缺陷。提出的方法使用由基于提升的小波变换(LBWT)构造的小波变换,以提供水印嵌入和提取部分之间的快速实现。在提出的方法的第一阶段,使用LBWT将原始音频主机信号转换为小波域。因此,信号被分解为低频和高频分量。近似系数对应于信号的低频分量。接下来,根据二进制图像的二进制值,将由伪随机数生成的水印嵌入到分段的主机音频信号的小波逼近系数中。将水印嵌入低频分量的原因是,这些分量的能量大于高频分量的能量,以致无法听到水印。因此,它不应更改可听内容,并且不应轻易删除。所提出的方法使用二进制图像来确定由伪随机数生成的水印是否被嵌入在音频主机信号中。为了评估所提出的音频水印方法的性能,进行了包括比特误码率(BER)和信噪比(SNR)的主观和客观质量测试。测试结果表明,所提出的方法在受到诸如低通滤波,重新量化,重采样和MP3压缩之类的常用音频数据的攻击后,具有很高的恢复率。 (C)2008 Elsevier Inc.保留所有权利。

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