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首页> 外文期刊>Journal of network and computer applications >A packet-reordering covert channel over VoLTE voice and video traffics
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A packet-reordering covert channel over VoLTE voice and video traffics

机译:VoLTE语音和视频流量上的数据包重新排序隐蔽通道

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摘要

Covert timing channels hide covert message in some timing behavior of an entity. The most common entity is the inter-packet delays (IPDs) which are modulated to represent the covert message. However, since the IPDs of voice over LTE (VoLTE) traffic are limited within a small range have obvious regularity, modifications to IPDs during modulation are easily detected. Therefore, in this paper, we propose a method for building a VoLTE covert channel, which is based on interleaving reordering of voice packets and video packets over VoLTE mixed traffics. Since the number of video packets in the voice packet interval is random, the covert message can be modulated into the numbers of video packets. Moreover, this method helps to increase the capacity of the covert channel. The approach employs Gray code to improve robustness against network jitter. To achieve the undetectability of the covert channel, the method adopts modular operation and the block composed of voice packet intervals to reduce the distribution difference between the covert traffic and the overt traffic. To deal with different adversary models, two different schemes are designed including the one based on video frames and another based on video packets. The difference between the two schemes is whether the rearranged video packets belong to the same video frame. The experimental results show that this solution can achieve high capacity while keeping undetectable and robust.
机译:隐蔽定时通道在实体的某些定时行为中隐藏隐蔽消息。最常见的实体是数据包间延迟(IPD),它们经过调制以表示隐蔽消息。但是,由于LTE语音(VoLTE)业务的IPD被限制在小范围内,具有明显的规律性,因此容易检测到调制期间对IPD的修改。因此,在本文中,我们提出了一种构建VoLTE隐蔽信道的方法,该方法基于在VoLTE混合流量上对语音数据包和视频数据包进行交错重排。由于语音数据包间隔中视频数据包的数量是随机的,因此可以将隐蔽消息调制为视频数据包的数量。此外,此方法有助于增加隐蔽通道的容量。该方法采用格雷码来提高针对网络抖动的鲁棒性。为了实现隐蔽信道的不可检测性,该方法采用模块化操作和由语音分组间隔组成的块,以减小隐蔽业务量与公开业务量之间的分配差异。为了应对不同的对手模型,设计了两种不同的方案,其中一种基于视频帧,另一种基于视频数据包。两种方案之间的区别在于,重新排列的视频包是否属于同一视频帧。实验结果表明,该解决方案可以实现高容量,同时保持不可检测和强大的性能。

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