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A new method to increase the capacity of audio steganography based on the LSB algorithm

机译:基于LSB算法的提高音频隐写能力的新方法

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摘要

Audio techniques have been developed for audio streaming on the internet. Using the TCP/IP protocol, audio file can be uploaded, downloaded, and transmitted through the internet. This benefit of transmission makes the interest in using audio as cover object in steganography become much stronger. Capacity which is one of the most important properties of audio steganographic methods, evaluates the amount of possible embedding data within the audio file. A new embedding technique of audio steganography is proposed to increase the carrier medium capacity for substitution additional hidden message. With respect to the performed tests, the algorithm succeeds to increase the depth of embedding layer, without having effects on the signal transparency. The maximum number of bits without significant effect on host audio signal for LSB audio steganography is 4 LSBs. The secret message bits are hidden into variable and multiple LSBs layer in this method. Experimental results show that the use of this new technique which apply 7 LSBs for data embedding in comparison the LSB standard algorithm with 4 LSBs improve data hiding capacity of carrier audio by 35% to 55%. It can be observed from listening tests that there is no significant difference between the stego audio acquired from the novel technique and the main signal.
机译:音频技术已经被开发用于互联网上的音频流。使用TCP / IP协议,可以通过互联网上载,下载和传输音频文件。传输的好处使得在隐写术中将音频用作封面对象的兴趣变得更加强烈。容量是音频隐秘方法的最重要属性之一,它评估音频文件中可能嵌入的数据量。提出了一种音频隐写术的新的嵌入技术,以增加用于替代附加隐藏消息的载体介质容量。关于执行的测试,该算法成功地增加了嵌入层的深度,而没有影响信号的透明度。对于LSB音频隐写术,对主机音频信号无明显影响的最大位数为4 LSB。在这种方法中,秘密消息位被隐藏在可变的和多个LSB层中。实验结果表明,与将LSB标准算法与4个LSB进行比较相比,使用这种应用7个LSB进行数据嵌入的新技术可以将载波音频的数据隐藏能力提高35%至55%。从听力测试可以看出,从新技术获得的隐身音频与主信号之间没有显着差异。

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