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Correlation based highly secure image hiding in audio signals using wavelet decomposition and chaotic maps hopping for 5G multimedia communications

机译:基于主信号的基于高度安全图像使用小波分解和混沌映射跳跃的5G多媒体通信

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Audio Steganography is the technique of hiding any secret information behind a cover audio file without impairing its quality. Data hiding in audio signals has various applications such as secret communications and concealing data that may influence the security and safety of governments and personnel and has possible important applications in 5G communication systems. This paper proposes an efficient secure steganography scheme based on the high correlation between successive audio signals. This is similar to the case of differential pulse coding modulation technique (DPCM) where encoding uses the redundancy in sample values to encode the signals with lower bit rate. Discrete Wavelet Transform (DWT) of audio samples is used to store hidden data in the least important coefficients of Haar transform. We use the benefit of the small differences between successive samples generated from encoding of the cover audio signal wavelet coefficients to hide image data without making a remarkable change in the cover audio signal. instead of changing of actual audio samples so this doesn't perceptually degrade the audio signal and provides higher hiding capacity with lower distortion. To further increase the security of the image hiding process, the image to be hidden is divided into blocks and the bits of each block are XORed with a different random sequence of logistic maps using hopping technique. The performance of the proposed algorithm has been estimated extensively against attacks and experimental results show that the proposed method achieves good robustness and imperceptibility.
机译:音频隐图是隐藏封面音频文件后面的任何秘密信息的技术,而不损害其质量。在音频信号中隐藏的数据具有各种应用,例如秘密通信和隐藏数据,可能影响政府和人员的安全性和安全性,并且在5G通信系统中具有可能的重要应用。本文提出了一种基于连续音频信号之间的高相关的高效安全隐写方案方案。这类似于差分脉冲编码调制技术(DPCM)的情况,其中编码使用样本值中的冗余来对信号进行较低比特率进行编码。音频样本的离散小波变换(DWT)用于将隐藏数据存储在HAAR变换的最不重要的系数中。我们利用从覆盖音频信号小波系数的编码产生的连续样本之间的小差异来隐藏图像数据而不在覆盖音频信号中进行显着变化。而不是改变实际的音频样本,因此这并不感知音频信号,并提供更高的失真的隐藏容量。为了进一步提高图像隐藏过程的安全性,要隐藏的图像被划分为块,并且每个块的比特使用跳跃技术具有不同的随机映射的随机序列。提出算法的性能已经广泛抵抗攻击和实验结果表明,该方法实现了良好的鲁棒性和难以察觉。

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