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Audio Watermarking: A Way to Stationnarize Audio Signals

机译:音频水印:平稳音频信号的一种方法

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Audio watermarking is usually used as a multimedia copyright protection tool or as a system that embed metadata in audio signals. In this paper, watermarking is viewed as a preprocessing step for further audio processing systems: the watermark signal conveys no information, rather it is used to modify the statistical characteristics of an audio signal, in particular its nonstationarity. The embedded watermark is then added in order to stationnarize the host signal. Indeed, the embedded watermark is piecewise stationary, thus it modifies the stationarity of the original audio signal. In some audio processing fields, this fact can be used to improve performances that are very sensitive to time-variant signal statistics. This paper presents an analysis of the perceptual watermarking impact on the stationarity of audio signals. The study is based on stationarity indices, which represent a measure of variations in spectral characteristics of signals, using time-frequency representations. Simulation results with two kinds of signals, artificial signals and audio signals (speech and music), are presented. Stationarity indices comparison between water-marked and original audio signals shows a significant stationarity enhancement of the watermarked signal, especially for transient attacks.
机译:音频水印通常用作多媒体版权保护工具或将元数据嵌入音频信号中的系统。在本文中,水印被视为进一步音频处理系统的预处理步骤:水印信号不传达任何信息,而是用于修改音频信号的统计特性,尤其是其非平稳性。然后添加嵌入的水印以使主机信号平稳。实际上,嵌入的水印是分段固定的,因此可以修改原始音频信号的平稳性。在某些音频处理领域,此事实可用于改善对时变信号统计非常敏感的性能。本文分析了感知水印对音频信号平稳性的影响。该研究基于平稳性指数,该平稳性指数使用时频表示来表示信号频谱特征变化的度量。给出了两种信号的仿真结果,分别是人造信号和音频信号(语音和音乐)。带水印的音频信号和原始音频信号之间的平稳性指标比较显示,带水印的信号的平稳性得到了显着增强,尤其是对于瞬时攻击。

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