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A Robust Zero-Watermarking Algorithm for Audio

机译:鲁棒的音频零水印算法

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In traditional watermarking algorithms, the insertion of watermark into the host signal inevitably introduces some perceptible quality degradation. Another problem is the inherent conflict between imperceptibility and robustness. Zero-watermarking technique can solve these problems successfully. Instead of embedding watermark, the zero-watermarking technique extracts some essential characteristics from the host signal and uses them for watermark detection. However, most of the available zero-watermarking schemes are designed for still image and their robustness is not satisfactory. In this paper, an efficient and robust zero-watermarking technique for audio signal is presented. The multiresolution characteristic of discrete wavelet transform (DWT), the energy compression characteristic of discrete cosine transform (DCT), and the Gaussian noise suppression property of higher-order cumulant are combined to extract essential features from the host audio signal and they are then used for watermark recovery. Simulation results demonstrate the effectiveness of our scheme in terms of inaudibility, detection reliability, and robustness.
机译:在传统的水印算法中,将水印插入到主机信号中不可避免地会引起一些明显的质量下降。另一个问题是不可感知性与鲁棒性之间的内在冲突。零水印技术可以成功解决这些问题。零水印技术不是嵌入水印,而是从主机信号中提取一些基本特征并将其用于水印检测。但是,大多数可用的零水印方案都是为静止图像设计的,其鲁棒性并不令人满意。本文提出了一种有效且健壮的音频信号零水印技术。结合离散小波变换(DWT)的多分辨率特性,离散余弦变换(DCT)的能量压缩特性以及高阶累积量的高斯噪声抑制特性,从主机音频信号中提取基本特征,然后将其使用用于水印恢复。仿真结果证明了我们的方案在听不清,检测可靠性和鲁棒性方面的有效性。

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