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A robust digital audio watermarking scheme based on DWT and Schur decomposition

机译:基于DWT和Schur分解的鲁棒数字音频水印方案。

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The vulnerability of digital audio signals for different types of risks requires an imperceptible and robust digital audio watermarking scheme. In this research, we propose creating one such imperceptible and robust hybrid watermarking scheme based on a discrete wavelet transform (DWT) and Schur decomposition hybrid method. The proposed scheme embeds the foreground bits of the watermarking image into the least significant bit of the diagonal coefficients of the triangular matrix S generated from Schur decomposition. Schur decomposition is applied on the second sub-band HL2 generated from applying a second-level 2D-Haar DWT on the first channel of the original audio signal. We analyze the proposed digital audio watermarking scheme's performance in terms of signal to noise ratio (SNR), objective difference grades (ODG), and subjective difference grades (SDG) that resulting 81.43, 4.78 and 0.184, respectively. The resulting of payload capacity, NC, and BER are as high as 319.29bps, 0.9911, and 0.0135, respectively. Experimental results confirm that the proposed scheme is inaudible and robust against common types of attacks such as Gaussian noise, re-quantization, re-sampling, low-pass filter, high-pass filter, echo, MP3 compression, and cropping. In comparison with state-of-the-art audio watermarking schemes, the proposed scheme's performance is superior in term of imperceptibility, robustness, and data payload size.
机译:数字音频信号针对不同类型风险的脆弱性要求一种不可感知且健壮的数字音频水印方案。在这项研究中,我们建议基于离散小波变换(DWT)和Schur分解混合方法创建一种这样的不可感知且鲁棒的混合水印方案。所提出的方案将水印图像的前景位嵌入由舒尔分解产生的三角矩阵S的对角系数的最低有效位。将Schur分解应用于通过在原始音频信号的第一通道上应用第二级2D-Haar DWT生成的第二子带HL2。我们从信噪比(SNR),客观差异等级(ODG)和主观差异等级(SDG)方面分析了提出的数字音频水印方案的性能,分别得出81.43、4.78和0.184。有效负载容量NC和BER分别高达319.29bps,0.9911和0.0135。实验结果证实,该方案对于常见的攻击类型(如高斯噪声,重新量化,重新采样,低通滤波器,高通滤波器,回声,MP3压缩和裁剪)是听不见的且鲁棒的。与最先进的音频水印方案相比,该方案的性能在感知力,鲁棒性和数据有效载荷大小方面都非常出色。

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