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Robust, transparent and high-capacity audio watermarking in DCT domain

机译:DCT域中的健壮,透明和大容量音频水印

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摘要

This paper presents a novel scheme capable of achieving robust, transparent and high-capacity blind audio watermarking. The watermark embedding is performed by modulating the vectors in the DCT domain subject to an auditory masking constraint. An algorithm has been developed to maintain the energy balance in a frequency band, thus allowing the retrieval of embedded information directly from the designated band. As the proposed watermarking scheme is implemented on a frame basis, the abrupt artefacts in frame boundaries are further rectified via linear interpolation over transition areas. The embedded watermark is shown to be imperceptible to human ears and yet robust against common digital signal processing attacks. The resulting payload capacity is as high as 848 bps. Moreover, not only a 100% recovery of the watermark is guaranteed for non-attack situations but the survival rate is substantially improved in the case of lowpass filtering even at a cutoff frequency as low as 500 Hz.
机译:本文提出了一种能够实现鲁棒,透明和大容量的盲音频水印的新颖方案。水印嵌入是通过在DCT域中调制听觉掩蔽约束条件下的向量来执行的。已经开发出一种算法来维持频带中的能量平衡,从而允许直接从指定频带中检索嵌入信息。由于所提出的水印方案是在帧的基础上实现的,因此帧边界上的突然伪像将通过过渡区域上的线性插值得到进一步纠正。嵌入的水印显示出对人耳是听觉不到的,但对常见的数字信号处理攻击却很健壮。产生的有效负载容量高达848 bps。此外,不仅在无攻击情况下保证了水印的100%恢复,而且即使在低至500 Hz的截止频率下,在低通滤波的情况下,生存率也得到了显着提高。

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