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DWT and DCT combined robust watermarking algorithm based on Vector Quantization with labeled codewords

机译:基于矢量量化的DWT和DCT组合鲁棒水印算法用标记的码字矢量量化

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In this paper, a novel robust audio watermarking algorithm is presented. It takes full advantage of the multi-resolution and the energy compression properties of the Discrete Wavelet Transform (DWT) and Discrete Cosine Transform (DCT) respectively, and embeds a pseudorandom permuted binary image in the original audio signal by Vector Quantization (VQ). The original audio is first transformed using the properly selected wavelet bases into the DWT domain, then the approximate coefficients are segmented into frames and transformed to the DCT domain, and for each frame, several middle-frequency DCT coefficients are composed as a vector to be substituted. Then the labeled-codeword VQ is used to quantize this vector according to the corresponding watermark bit. The modified coefficient vectors together with the untouched coefficients are IDCT-transformed to get the watermarked approximate coefficients. Finally, the watermarked audio signal is attained by using the detail coefficients and the modified approximate coefficients. Experimental results show that the proposed watermarking algorithm has strong robustness to both most of the attacks in the Stirmark Benchmark for Audio and the cropping attack.
机译:本文介绍了一种新型鲁棒音频水印算法。它可以充分利用离散小波变换(DWT)和离散余弦变换(DCT)的多分辨率和能量压缩特性,并通过矢量量化(VQ)在原始音频信号中嵌入伪随机允许的二进制图像。首先使用正确选择的小波碱基进入DWT域的原始音频,然后将近似系数分段为帧并转换为DCT域,并且对于每个帧,若干中频DCT系数被组成为载体取代。然后,标记的码字Vq用于根据相应的水印位来量化该矢量。修改的系数矢量与未触摸的系数一起是IDCT变换的,以获得水印的近似系数。最后,通过使用细节系数和修改的近似系数来实现水印音频信号。实验结果表明,该拟议的水印算法对音频和裁剪攻击的睾丸基准中的大部分攻击具有强大的稳健性。

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