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Time-Spread Echo-Based Audio Watermarking With Optimized Imperceptibility and Robustness

机译:基于时延回声的音频水印,具有最佳的不易察觉性和鲁棒性

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摘要

We present a time-spread echo-based audio watermarking scheme with optimized imperceptibility and robustness. Specifically, convex optimization based finite-impulse-response (FIR) filter design is utilized to obtain the optimal echo filter coefficients. The desired power spectrum of the echo filter is shaped by the proposed maximum power spectral margin (MPSM) and the absolute threshold of hearing (ATH) of human auditory system (HAS) to ensure the optimal imperceptibility. Meanwhile, the auto-correlation function of the echo filter coefficients is specified as the constraint in the problem formulation, which controls the robustness in terms of watermark detection. In this way, a joint optimization of imperceptibility and robustness can be quantitatively performed. As a result, the proposed watermarking scheme is superior to existing solutions such as the ones based on pseudo noise (PN) sequence or modified pseudo noise (MPN) sequence. Note that the designed echo kernel is also highly secure in that only with the same filter coefficients can one successfully detect the watermark. Experimental results are provided to evaluate the imperceptibility and robustness of the proposed watermarking scheme.
机译:我们提出了一种具有优化的隐身性和鲁棒性的基于时延回波的音频水印方案。具体而言,利用基于凸优化的有限冲激响应(FIR)滤波器设计来获得最佳回波滤波器系数。回声滤波器的理想功率谱由建议的最大功率谱裕度(MPSM)和人类听觉系统(HAS)的绝对听力阈值(ATH)来确定,以确保获得最佳的不可感知性。同时,将回波滤波器系数的自相关函数指定为问题公式中的约束条件,从而控制了水印检测的鲁棒性。以这种方式,可以定量地执行不可感知性和鲁棒性的联合优化。结果,提出的水印方案优于现有的解决方案,例如基于伪噪声(PN)序列或修改的伪噪声(MPN)序列的解决方案。请注意,设计的回波内核也非常安全,因为只有使用相同的滤波器系数才能成功检测到水印。提供实验结果以评估所提出的水印方案的不可感知性和鲁棒性。

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