结合最小有效位和四包长度的数字音频数据隐写技术

Arief Bramanto Wicaksono Putra, M. Jufri, Dirgahayu Lantara, Anugrah Assyauqi, Agusma Wajiansyah, A. Pranolo
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引用次数: 3

摘要

隐写过程需要两种不同的媒体,即消息和覆盖媒体,目的是将文本消息信息插入或隐藏到音频媒体中,使除发送方和接收方外没有人知道存在秘密消息。本研究使用的信息为“txt”格式的文本数据,封面为“wav”格式的数字音频数据。消息插入采用LSB (Least Significant Bit)方法。在这种情况下,文本和音频数据需要转换为8位二进制格式。所提出的4-Wrap Length方法是确定消息插入封面的位置,随机产生插入结果,使消息的内容不容易被知道的方法。使用均方误差(MSE)和峰值信噪比(PSNR)对隐写结果进行性能测量。本研究使用了持续时间为10秒的音频数据文件样本和5条不同长度的文本信息。研究结果表明,短信越长,MSE越大,PSNR越小。由此可见,隐写音频的质量很大程度上取决于文本信息的长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Steganography for Data Hiding in Digital Audio Data using Combined Least Significant Bit and 4-Wrap Length Method
Steganography process requires two different media, namely messages and cover media with the aim to insert or hide a text message information into the audio media so that in addition to sender and receiver no one knows that there is a secret message. In this study, the message used is text data in “txt” format and the cover is digital audio data in “wav” format. Message insertion is performed by using the Least Significant Bit (LSB) method. In this case, text and audio data need to be converted into 8-bit binary forms. The 4-Wrap Length method is the method proposed to determine the insertion position of the message into the cover to generate the insertion results randomly so that the contents of the message are not easily known. Performance measurement of the steganography results was performed by using MSE (Mean Squared Error) and PSNR (Peak Signal-to-Noise Ratio). This study has used a sample of audio data files that have duration of 10 seconds as a cover and five text messages of different lengths. The study results showed that the longer the text message, the larger the MSE and the smaller the PSNR. It can be concluded that the quality of stego-audio was very depend on the length of the text message.
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