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首页> 外文期刊>EURASIP journal on advances in signal processing >Audio watermarking scheme robust against desynchronization based on the dyadic wavelet transform
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Audio watermarking scheme robust against desynchronization based on the dyadic wavelet transform

机译:基于二进小波变换的抗不同步音频水印方案

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摘要

Digital watermarking is a technique used to embed an extra piece of information into multimedia signals without degrading the signal quality. For robust audio watermarking, geometrical modifications are common operations and present many challenges because they severely alter the tempo or spectral structures of the audio and thus cause watermark desynchronization. However, most of the existing audio watermarking algorithms lack resynchronization ability due to the nongeometrically-invariant nature of the watermarking domain. In this paper, we consider the dyadic wavelet transform (DYWT) for its geometrical invariants which can help resynchronize the watermark. We then design a novel embedding method based on shape modulation which is demonstrated to be robust against many kinds of attack. Based on the knowledge of the insertion, deletion, and substitution (IDS) channel, we carefully design a novel error correction coding (ECC) with the ability of bit-resynchronization to correct the IDS errors in the watermark. Compared with existing algorithms, our algorithm achieves greater robustness to geometrical modifications and other common operations.
机译:数字水印是一种用于在多媒体信号中嵌入额外信息而不降低信号质量的技术。对于鲁棒的音频水印,几何修改是常见的操作,并且提出了许多挑战,因为它们会严重改变音频的速度或频谱结构,从而导致水印不同步。然而,由于水印域的非几何不变的性质,大多数现有的音频水印算法缺乏重新同步能力。在本文中,我们考虑二进小波变换(DYWT)的几何不变性,可以帮助重新同步水印。然后,我们设计了一种基于形状调制的新颖嵌入方法,该方法被证明可以抵抗多种攻击。基于对插入,删除和替换(IDS)通道的了解,我们精心设计了一种新型的纠错编码(ECC),它具有位重新同步功能,可以纠正水印中的IDS错误。与现有算法相比,我们的算法对几何修改和其他常见操作具有更高的鲁棒性。

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