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Audio Watermarking Using Wavelet Transform and Genetic Algorithm for Realizing High Tolerance to MP3 Compression

机译:基于小波变换和遗传算法的音频水印实现MP3压缩的高容忍性。

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Recently, several digital watermarking techniques have been proposed for hiding data in the frequency domain of audio signals to protect the copyrights. However, little attention has been given to the optimal position in the frequency domain for embedding watermarks. In general, there is a tradeoff between the quality of the watermarked audio and the tolerance of watermarks to signal processing methods, such as compression. In the present study, a watermarking method developed for a visual image by using a wavelet transform was applied to an audio clip. We also improved the performance of both the quality of the watermarked audio and the extraction of watermarks after compression by the MP3 technique. To accomplish this, we created a multipurpose optimization problem for deciding the positions of watermarks in the frequency domain and obtaining a near-optimum solution. The near-optimum solution is obtained by using a genetic algorithm. The experimental results show that the proposed method generates watermarked audios of good quality and high tolerance to MP3 compression. In addition, the security was improved by using the characteristic secret key to embed and extract the watermark information.
机译:最近,已经提出了几种数字水印技术,用于在音频信号的频域中隐藏数据以保护版权。但是,很少有人关注嵌入水印的频域中的最佳位置。通常,在加水印的音频的质量和水印对信号处理方法(例如压缩)的容忍度之间要进行权衡。在本研究中,通过使用小波变换为可视图像开发的水印方法被应用于音频剪辑。我们还通过MP3技术提高了水印音频质量和压缩后水印提取的性能。为此,我们创建了一个多用途优化问题,用于确定水印在频域中的位置并获得接近最佳的解决方案。通过使用遗传算法获得接近最佳的解决方案。实验结果表明,该方法能够产生高质量的水印音频,并且对MP3压缩具有较高的容忍度。另外,通过使用特征秘密密钥嵌入和提取水印信息来提高安全性。

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