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A high capacity quantization-based audio watermarking technique using the DWPT

机译:基于高容量量化的基于量化的音频水印技术,使用DWPT

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Transparency, robustness and hiding bit rate are the three major constraints of digital watermarking techniques. Unfortunately, these requirements are conflicted so they cannot be fulfilled together in the same time. In this paper, we propose a new quantization-based audio watermarking system that tends to conciliate between these constraints. The proposed technique is based on the application of the QIM (Quantization Index Modulation) technique on the DWPT (Discrete Wavelet Packet Transform) coefficients. The DWPT is used to decompose the host audio signal into a multiple subbands that approximate the CB (Critical Bands) structure of the HAS (Human Auditory System). This way, the quantizers resolution used by the QIM technique are adjusted over each selected CB to ensure transparency and maximize robustness. Furthermore, to increase the hiding bit rate without losing transparency a multi quantization strategy is exploited. The experimental results shows that the proposed system permits a high embedding capacity of about 134kbps without significant perceptual degradation, and provides robustness against some specific attacks.
机译:透明度,鲁棒性和隐藏比特率是数字水印技术的三个主要约束。不幸的是,这些要求被冲突,因此不能同时在一起实现。在本文中,我们提出了一种新的基于量化的音频水印系统,倾向于在这些约束之间调解。所提出的技术基于QIM(量化索引调制)技术在DWPT(离散小波分组变换)系数上的应用。 DWPT用于将主机音频信号分解成多个子带,该多个子带近似于具有(人类听觉系统)的CB(临界频带)结构。这样,通过QIM技术使用的量化器分辨率在每个选择的CB上调整,以确保透明度并最大化鲁棒性。此外,为了增加未损失透明度的隐藏比特率,利用多量化策略。实验结果表明,该系统允许大约134kbps的高嵌入能力,而无明显降解,并为某些特定攻击提供鲁棒性。

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