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Robust audio watermarking algorithm based on DWT using Fibonacci numbers

机译:基于Fibonacci数的DWT的鲁棒音频水印算法。

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This paper presents a blind and robust audio watermarking algorithm developed based on Fibonacci numbers properties and the discrete wavelet transform (DWT) advantages. The method embeds watermark bits in the 6th level approximation subband of DWT at which there is less sensitivity of the human auditory system. The key idea is dividing the 6th level approximation coefficients into small frames and modifying their magnitude based on Fibonacci numbers and watermark bit values. The proposed watermarking method demonstrates a superior robustness against different common attacks (i.e., Gaussian noise addition, Low-pass filter, Resampling, Requantizing, MP3 compression, Amplitude scaling, Echo addition, Time shift, and Cropping). Compared to recently developed methods, the proposed algorithm is much more robust against the most common attacks with capacity as high as 686 bits per second. The results of PEAQ testing verify the quality of watermarked audio signal without significant perceptual distortion. The algorithm allows flexibility in audio watermark algorithm to achieve a balance between robustness and imperceptibility while the capacity is maintained constant by choosing various kinds of sequence.
机译:本文提出了一种基于斐波纳契数属性和离散小波变换(DWT)优点而开发的盲而鲁棒的音频水印算法。该方法将水印位嵌入到DWT的第六级近似子带中,在该子带处人类听觉系统的灵敏度较低。关键思想是将第6级逼近系数分成小帧,并根据斐波那契数和水印位值修改其大小。所提出的加水印方法展示了针对不同常见攻击(即高斯噪声添加,低通滤波器,重采样,重新量化,MP3压缩,幅度缩放,回声添加,时移和裁剪)的出色鲁棒性。与最近开发的方法相比,该算法对最常见的攻击具有更高的鲁棒性,容量高达每秒686位。 PEAQ测试的结果证明了带水印的音频信号的质量,而没有明显的感知失真。该算法允许音频水印算法具有灵活性,以在鲁棒性和不可感知性之间取得平衡,同时通过选择各种序列将容量保持恒定。

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