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Capacity-optimized mp2 audio watermarking

机译:容量优化的mp2音频水印

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摘要

Today a number of audio watermarking algorithms have been proposed, some of them at a quality making them suitable 1 for commercial applications. The focus of most of these algorithms is copyright protection. Therefore, transparency and 1 robustness are me most discussed and optimised parameters. But other applications for audio watermarking can also be identified stressing other parameters like complexity or payload. In our paper, we introduce a new mp2 audio watermarking algorithm optimised for high payload. Our algorithm uses the scale factors of an mp2 file for watermark embedding. They are grouped and masked based on a pseudo-random pattern generated from a secret key. In each group, we embed one bit. Depending on the bit to embed, we change the scale factors by adding 1 where necessary until it includes either more even or uneven scale factors. An uneven group has a 1 embedded, an even group a 0. The same rule is later applied to detect the watermark. The group size can be increased or decreased for transparency/payload trade-off. We embed 160 bits or more in an mp2 file per second without reducing perceived quality. As an application example, we introduce a prototypic Karaoke system displaying song lyrics embedded as a watermark.
机译:如今,已经提出了许多音频水印算法,其中一些算法的质量使其适合于商业应用。这些算法大多数的焦点是版权保护。因此,透明度和1鲁棒性是我讨论最多的参数,也是最优化的参数。但是,也可以识别出其他用于音频水印的应用程序,从而强调其他参数,例如复杂性或有效负载。在本文中,我们介绍了一种针对高有效负载而优化的新mp2音频水印算法。我们的算法使用mp2文件的比例因子进行水印嵌入。根据从密钥生成的伪随机模式对它们进行分组和屏蔽。在每个组中,我们都嵌入了一点。根据要嵌入的位,我们通过在必要时加1来更改比例因子,直到它包含更多偶数或不均匀比例因子。不均匀组具有嵌入的1,偶数组具有0。稍后,将相同的规则应用于检测水印。可以增加或减少组的大小,以实现透明/有效负载的权衡。我们每秒将160位或更多位嵌入mp2文件中,而不会降低感知质量。作为一个应用示例,我们引入了一个原型卡拉OK系统,该系统显示嵌入为水印的歌曲歌词。

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