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首页> 外文期刊>Information Sciences: An International Journal >A payload-dependent packet rearranging covert channel for mobile VoIP traffic
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A payload-dependent packet rearranging covert channel for mobile VoIP traffic

机译:用于移动VoIP流量的封面通道的有效载荷依赖性数据包

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VoIP (Voice over Internet Protocol) is one of the most prevalent services for the mobile users. An enormous amount of audio and video data is transmitted over VoIP communication continuously, to make it potentially available for stealth message transfer. The existing covert channel schemes focus on modifying packet payload or inter-packet delays, the former kind is easy to be detected since a minor modification may lead to distinct abnormalities, while the latter is too sensitive to network jitter due to its short inter-packet delays. Hence, to effectively construct covert channel becomes a challenge, and requires investigation in using mobile VoIP traffic for robust and stealthy covert communication. In this paper, we propose a covert channel scheme which communicates by rearranging the packet sending sequences while keeps the undetectability and robustness. Unlike the existed packet rearranging covert channels which may concentrate on packet rearranging according to the existed packet features such as packet id and packet length, the proposed scheme focuses on building packet rearranging covert channel whose function is regardless of the variation on legitimate traffic. According to the hash value of the payload, the packets are classified into delimiter packets and carrier packets, and the covert message is embedded onto a number of carrier packets (NoCP) between the relative delimiter packets. Moreover, to mitigate the interference from channel noise, the differences between two correlative NoCPs are utilized as the codewords by redundantly partitioning their values into 1-bit symbols. The channel parameters are adjustable to trade off between the efficiency and security. The corresponding experiments are conducted over three kinds of typical mobile VoIP traffics to evaluate the undetectability, robustness and throughput of our scheme. Results of the BER (bit error rate) and KS (Kolmogorov-Smirnov) test show that the scheme is robust and stealthy. (C) 2018 Elsev
机译:VoIP(互联网语音协议)是移动用户最普遍的服务之一。大量音频和视频数据连续地通过VoIP通信传输,以使其可能用于隐形消息传输。现有的隐蔽通道方案专注于修改分组有效载荷或分组间延迟,因此易于检测到的前一种类型,因为微小的修改可能导致不同的异常,而后者由于其短暂的分组而对网络抖动太敏感延迟。因此,为了有效地构建隐蔽渠道成为挑战,并且需要调查使用移动VoIP流量以实现鲁棒和隐秘的秘密通信。在本文中,我们提出了一种封面信道方案,其通过重新排列分组发送序列来传达,同时保持未检测性和鲁棒性。与存在的分组相似,该封面通道可以集中在根据存在的分组特征(如分组ID和分组长度)集中在分组重新排列,所提出的方案侧重于建筑分组重新排列的封面信道,其功能是不管合法流量的变化。根据有效载荷的散列值,分组被分类为分隔符分组和运营商分组,并且封面消息嵌入到相对分隔符分组之间的多个载波分组(NOCP)上。此外,为了减轻信道噪声的干扰,通过将它们的值冗余分区为1位符号来利用两个相关NOCPS之间的差异作为码字。通道参数可调可在效率和安全性之间进行折衷。相应的实验是在三种典型的移动VoIP流量进行的,以评估我们计划的未检测性,稳健性和吞吐量。 BER(位错误率)和KS(KOLMOGOROV-SMIRNOV)测试结果表明该方案是坚固且隐秘的。 (c)2018年ELSEV

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