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Supplementary Schemes to Enhance the Performance of DWT-RDM-Based Blind Audio Watermarking

机译:增强基于DWT-RDM的盲音频水印性能的补充方案

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This paper reports two schemes aimed at enhancing the performance of an algorithm based on rational dither modulation (RDM) for the blind watermarking of audio signals. The enhanced algorithm operates in a 4th-level approximation subband, which is obtained through discrete wavelet transform (DWT) decomposition. The first scheme involves the application of a two-tap FIR lowpass filter to mask the noise induced by watermarking, while the second scheme is meant to compensate for distortion introduced by vector modulation. These two schemes make it possible for the DWT-RDM algorithm to formulate audio watermarking with a payload capacity of 689 bits per second. The embedding process is organized as parametric vector operations, which allow the implantation of binary bits into DWT coefficient vectors using two variables, respectively, corresponding to lowpass filtering and distortion compensation. Experiments aimed at evaluating the quality of the resulting audio files indicated an improvement in average ODG score from to . Furthermore, we observed a noticeable reduction in the bit error rates when conducting robustness tests against attacks, such as brumm addition, zero crossing, noise corruption, echo addition, MPEG-1 layer 3 compression, and time shifting.
机译:本文报告了两种旨在增强基于有理抖动调制(RDM)的算法的性能的方案,该方案用于音频信号的盲水印。增强算法在第4级近似子带中运行,该子带是通过离散小波变换(DWT)分解获得的。第一种方案涉及应用两抽头FIR低通滤波器以掩盖由水印引起的噪声,而第二种方案旨在补偿矢量调制带来的失真。这两种方案使DWT-RDM算法能够以每秒689位的有效负载容量来制定音频水印。嵌入过程被组织为参数向量运算,其允许分别使用对应于低通滤波和失真补偿的两个变量将二进制比特植入DWT系数向量中。旨在评估最终音频文件质量的实验表明,平均ODG得分从改善到。此外,当进行针对攻击的鲁棒性测试时,例如布鲁姆加法,零交叉,噪声破坏,回声加法,MPEG-1第3层压缩和时移,我们观察到了误码率的显着降低。

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