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A novel embedding method to increase capacity and robustness of low-bit encoding audio steganography technique using noise gate software logic algorithm

机译:一种使用噪声门软件逻辑算法提高低位编码音频隐写技术容量和鲁棒性的新型嵌入方法

摘要

In this study, we developed a novel method that is able to shift the limit for transparent data hiding in audio from the fourth LSB layer to the eighth LSB layer, thus the method has improved the capacity and robustness of data hiding in the audio file using a two steps approach. In the first step, noise gate software logic used to obtain a desired signal for embedding the secret message of the input host audio signal (carrier). In the second step, standard 8th LSB layer embedding has been done for this desired signal. Audio quality evaluation has used to evaluate our purposed method in two ways. First, objective test showed the algorithm succeeds in this task, while increasing SNR values of our algorithm comparing to SNR values obtained by standard LSB embedding in the 8th bits LSB layer and the comparison of the histogram audio excerpts has proved this also. Second, subjective listening test proved that high perceptual transparency is accomplished even if eight LSB of host audio signal are used for data hiding.
机译:在这项研究中,我们开发了一种新颖的方法,该方法能够将音频中透明数据隐藏的限制从第四LSB层转移到第八LSB层,因此该方法使用以下方法提高了音频文件中数据隐藏的容量和鲁棒性:两步走法。在第一步中,噪声门软件逻辑用于获得所需信号,以嵌入输入主机音频信号(载波)的秘密消息。在第二步中,已针对此所需信号完成了标准的第8个LSB层嵌入。音频质量评估已通过两种方式评估了我们的目标方法。首先,客观测试表明该算法成功完成了该任务,同时与通过在第8位LSB层中嵌入标准LSB所获得的SNR值相比,增加了我们算法的SNR值,并且直方图音频摘录的比较也证明了这一点。其次,主观听觉测试证明,即使使用主机音频信号的八个LSB进行数据隐藏,也可以实现较高的感知透明度。

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