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Perceptual-based DWPT-DCT framework for selective blind audio watermarking

机译:基于感知的DWPT-DCT框架用于选择性盲音频水印

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摘要

Motivated by the human auditory perception, a framework jointly exploiting the discrete wavelet packet transform (DWPT) and the discrete cosine transform (DCT) is presented to perform variable-capacity blind audio watermarking without introducing perceptible distortion. To achieve a balanced performance between robustness and imperceptibility, a perceptual-based quantization index modulation technique is utilized for embedding the watermark bits. The effectiveness of the proposed scheme has been proven using the perceptual evaluation of audio quality (PEAQ) and bit error rates of recovered watermarks under various signal processing attacks. Experimental results show that the proposed DWPT-DCT scheme is comparable to three recently developed methods in robustness while it is the only scheme surviving the amplitude scaling attack. Moreover, to ensure the watermark in a harsh environment a back-propagation neural network has been adopted to seek suitable segments for watermark embedding. With the employment of the selective scheme, the embedded watermark receives significantly better protection against serious attacks.
机译:出于人类听觉的动机,提出了一种联合利用离散小波包变换(DWPT)和离散余弦变换(DCT)的框架,以执行可变容量的盲音频水印,而不会引入可感知的失真。为了在鲁棒性和不可感知性之间达到平衡的性能,基于感知的量化索引调制技术被用于嵌入水印位。使用音频质量的感知评估(PEAQ)和在各种信号处理攻击下恢复的水印的误码率,已证明了该方案的有效性。实验结果表明,所提出的DWPT-DCT方案在鲁棒性方面可与三种最新开发的方法相媲美,而它是唯一能够克服幅度缩放攻击的方案。而且,为了确保在恶劣环境下的水印,已经采用了反向传播神经网络来寻找用于水印嵌入的合适片段。通过使用选择性方案,嵌入的水印获得了针对严重攻击的更好的保护。

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