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A Novel Audio Watermarking Algorithm Based on Non-Negative Matrix Factorization

机译:基于非负矩阵分解的新型音频水印算法

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摘要

Digital watermarking has become an accepted technology for enabling multimedia protection schemes. While most watermarking schemes in literatures are usually implemented by embedding a mark in a host media itself for intended purposes. The existing techniques for watermarking are confronted with the problems of perceptible quality degradation and the inherent conflict between imperceptibility and robustness, which introduced by the watermark embedding. This paper proposes a state-of-the-art audio watermarking method for content authentication, based on non-negative matrix factorization (NMF) and lifting-based wavelet transformation. The method consists of three processes: First the audio is divided to frame by fixed length and then low-frequent and high-frequent components are obtained by three-level lifting-based wavelet transformation in every frame. Secondly the audio frame is approximately represented as a product of a base matrix and a coefficient matrix using NMF. Finally the sum of each column in the coefficient matrix is calculated which is quantized to produce a feature vector, and then the copyright information is obtained by calculating the watermark and feature vector. Experiment results show that the proposed method is not only robust to common audio processing, such as Mp3 compression, filtering, equalization, noise addition and re-sampling etc., but also provides a high level of security for a given application.
机译:数字水印已成为启用多媒体保护方案的公认技术。虽然文献中的大多数水印方​​案通常是通过将标记嵌入宿主介质本身来实现预期目的而实现的。现有的水印技术面临着水印嵌入带来的可感知的质量下降以及不可感知性与鲁棒性之间的固有冲突的问题。本文提出了一种基于非负矩阵分解(NMF)和基于提升的小波变换的用于内容认证的最新音频水印方法。该方法包括三个过程:首先,将音频按固定长度分为帧,然后在每个帧中通过基于三级提升的小波变换获得低频和高频分量。其次,使用NMF将音频帧近似表示为基本矩阵和系数矩阵的乘积。最后,计算系数矩阵中每一列的总和,将其量化以生成特征向量,然后通过计算水印和特征向量来获得版权信息。实验结果表明,该方法不仅对常见的音频处理(如Mp3压缩,滤波,均衡,噪声添加和重采样等)具有鲁棒性,而且还为给定的应用程序提供了较高的安全性。

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