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A new adaptive digital audio watermarking based on support vector machine

机译:基于支持向量机的新型自适应数字音频水印

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摘要

It is a challenging work to design a robust digital audio watermarking scheme against desynchronization attacks. On the basis of support vector machines (SVMs), a new robust digital audio watermarking algorithm against desynchronization attacks is proposed in this paper, and in this the audio statistics characteristics and synchronization code are utilized. Firstly, the optimal embedding positions are located adaptively by using the SVM theory. Secondly, the 16-bit Barker code is chosen as synchronization mark and embedded into the digital audio by modifying the statistics average value of several samples. Finally, the digital watermark are embedded into the statistics average value of low-frequency components in wavelet domain by making full use of auditory masking. Experimental results show that the proposed scheme is inaudible and robust against common signal processing such as MP3 compression, low-pass filtering, noise addition, equalization, etc., and is robust against desynchronization attacks such as random cropping, amplitude variation, pitch shifting, time-scale modification, jittering, etc.
机译:设计一种强大的数字音频水印方案以应对不同步攻击是一项艰巨的工作。在支持向量机的基础上,提出了一种新的鲁棒的抗不同步攻击的数字音频水印算法,并利用了音频统计特性和同步代码。首先,利用支持向量机理论对最优嵌入位置进行自适应定位。其次,通过修改几个样本的统计平均值,选择16位巴克码作为同步标记并嵌入到数字音频中。最后,通过充分利用听觉掩盖,将数字水印嵌入到小波域低频分量的统计平均值中。实验结果表明,所提出的方案对于MP3压缩,低通滤波,噪声添加,均衡等常见信号处理是听不见的,并且很健壮,并且对于诸如随机裁剪,幅度变化,音高偏移,时标修改,抖动等

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