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Robust Segments Detector for De-Synchronization Resilient Audio Watermarking

机译:鲁棒的分段检测器,用于去同步弹性音频水印

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摘要

A robust feature points detector for invariant audio watermarking is proposed in this paper. The audio segments centering at the detected feature points are extracted for both watermark embedding and extraction. These feature points are invariant to various attacks and will not be changed much for maintaining high auditory quality. Besides, high robustness and inaudibility can be achieved by embedding the watermark into the approximation coefficients of Stationary Wavelet Transform (SWT) domain, which is shift invariant. The spread spectrum communication technique is adopted to embed the watermark. Experimental results show that the proposed Robust Audio Segments Extractor (RASE) and the watermarking scheme are not only robust against common audio signal processing, such as low-pass filtering, MP3 compression, echo addition, volume change, and normalization; and distortions introduced in Stir-mark benchmark for Audio; but also robust against synchronization geometric distortions simultaneously, such as resample time-scale modification (TSM) with scaling factors up to ${pm}50hbox{%}$, pitch invariant TSM by ${pm}50hbox{%}$ , and tempo invariant pitch shifting by ${pm}50hbox{%}$. In general, the proposed scheme can well resist various attacks by the joint RASE and SWT approach, which performs much better comparing with the existing state-of-the art methods.
机译:提出了一种用于不变音频水印的鲁棒特征点检测器。以水印嵌入和提取为中心,提取以检测到的特征点为中心的音频片段。这些特征点对于各种攻击是不变的,并且不会为保持较高的听觉质量而进行太多更改。此外,通过将水印嵌入到平稳不变的固定小波变换(SWT)域的近似系数中,可以实现较高的鲁棒性和听觉性。采用扩频通信技术嵌入水印。实验结果表明,所提出的鲁棒音频片段提取器(RASE)和水印方案不仅对常见的音频信号处理(如低通滤波,MP3压缩,回声添加,音量变化和归一化)具有鲁棒性。以及Stir-mark音频基准测试中引入的失真;而且还具有强大的同步同步失真能力,例如缩放因子高达$ {pm} 50hbox {%} $的重采样时间刻度修改(TSM),音高不变的TSM $ {pm} 50hbox {%} $和速度不变音高偏移$ {pm} 50hbox {%} $。通常,所提出的方案可以很好地抵抗RASE和SWT联合方法的各种攻击,与现有的现有技术方法相比,其性能要好得多。

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