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Encrypted audio dataset based on the Collatz conjecture

机译:基于Collat​​z猜想的加密音频数据集

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摘要

In information security, one way to keep a secret content is through encryption. The objective is to alter the content so that it is not intelligible, and therefore only the intended user can reveal the secret content. With the aim to provide examples of encrypted audio data, we applied a novel method of encryption based on the Collatz conjecture in five hundred speech recordings (50 speakers, 10 different messages), and then five hundred encrypted audio files were obtained. The main characteristics of our encrypted recordings are as follows: the spectrogram is quasi-uniform, histograms have a repetitive pattern, average of samples is around −0.4, standard deviation is around 0.55; Shannon entropy is around 7.5 (for 8-bits per sample). The novelty of the results consists in obtaining a completely different behavior than natural speech recordings, i.e.: spectrogram with higher energy in low frequencies, histogram with Gaussian behavior, average of samples around 0, standard deviation around 0.11, entropy around 5.5. A more comprehensive analysis of our encrypted signals may be obtained from the article “High-uncertainty audio signal encryption based on the Collatz conjecture” in the Journal of Information Security and Applications.
机译:在信息安全中,保存机密内容的一种方法是通过加密。目的是更改内容,使之不易理解,因此,只有目标用户才能泄露机密内容。为了提供加密音频数据的示例,我们在500个语音记录(50个扬声器,10条不同的消息)中应用了基于Collat​​z猜想的新颖加密方法,然后获得了500个加密音频文件。我们加密记录的主要特征如下:频谱图是准均匀的,直方图具有重复的模式,样本的平均值约为-0.4,标准偏差约为0.55;香农熵约为7.5(每个样本8位)。结果的新颖性在于获得了与自然语音记录完全不同的行为,即:低频具有更高能量的声谱图,具有高斯行为的直方图,样本平均值约为0,标准偏差约为0.11,熵约为5.5。可以从《信息安全与应用杂志》上的“基于Collat​​z猜想的高不确定性音频信号加密”一文中获得对我们的加密信号的更全面的分析。

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