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Optimization-Based Embedding for Wavelet-Domain Audio Watermarking

机译:基于优化的小波域音频水印嵌入

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摘要

This work proposes a new blind digital audio watermarking system by using optimization-based modification on low-frequency amplitude of discrete wavelet transform (DWT). To modify the low-frequency amplitude under the best signal-to-noise ratio (SNR), the proposed embedding system minimizes the difference between the original and the embedded coefficients. Accordingly, an optimization-based embedding formula connecting the SNR and the embedding system is derived. The formula is then applied to embed the synchronization codes and the watermarks. Based on this formula, the number of DWT coefficients for embedding a binary bit can be increased to enhance the robustness without decreasing the audio quality. Consequently, the embedded audio has good quality and good robustness under high capacity. In addition, the system can extract the hidden data without the knowledge of original audio signal. Finally, the performance of the proposed watermarking method is tested. Experimental results indicate that the performance of proposed system is better than other DWT amplitude modification method.
机译:通过对离散小波变换(DWT)的低频幅度进行基于优化的修改,提出了一种新的盲数字音频水印系统。为了在最佳信噪比(SNR)下修改低频幅度,建议的嵌入系统将原始系数和嵌入系数之间的差异最小化。因此,推导了连接SNR和嵌入系统的基于优化的嵌入公式。然后将公式应用于嵌入同步代码和水印。基于此公式,可以增加用于嵌入二进制位的DWT系数的数量,以增强鲁棒性而不会降低音频质量。因此,嵌入式音频在高容量下具有良好的质量和良好的鲁棒性。另外,该系统可以在不知道原始音频信号的情况下提取隐藏数据。最后,测试了所提出的水印方法的性能。实验结果表明,该系统的性能优于其他DWT幅度修正方法。

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