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Achieving robustness and capacity gains in covert timing channels

机译:在隐秘的定时通道中实现鲁棒性和容量增加

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In this paper, we introduce a covert timing channel (CTC) algorithm and compare it to one of the most prevailing CTC algorithms, originally proposed by Cabuk et al. CTC is a form of covert channels — methods that exploit network activities to transmit secret data over packet-based networks — by modifying packet timing. This algorithm is a seminal work, one of the most widely cited CTCs, and the foundation for many CTC research activities. In order to overcome some of the disadvantages of this algorithm we introduce a covert timing channel technique that leverages timeout thresholds. The proposed algorithm is compared to the original algorithm in terms of channel capacity, impact on overt traffic, bit error rates, and latency. Based on our simulation results the proposed algorithm outperforms the work from Cabuk et al., especially in terms of its higher covert data transmission rate with lower latency and fewer bit errors. In our work we also address the desynchronization problem found in Cabuk et al.'s algorithm in our simulation results and show that even in the case of the synchronization-corrected Cabuk et al. algorithm our proposed method provides better results in terms of capacity and latency.
机译:在本文中,我们介绍了一种隐式定时信道(CTC)算法,并将其与最流行的CTC算法之一进行了比较,该算法最初是由Cabuk等人提出的。 CTC是隐蔽通道的一种形式,即通过修改数据包定时来利用网络活动在基于数据包的网络上传输秘密数据的方法。该算法是一项开创性的工作,是被广泛引用的CTC之一,也是许多CTC研究活动的基础。为了克服该算法的一些缺点,我们引入了一种利用超时阈值的秘密定时通道技术。在信道容量,对公开流量的影响,误码率和等待时间方面,将所提出的算法与原始算法进行了比较。根据我们的仿真结果,所提出的算法优于Cabuk等人的工作,特别是在隐蔽数据传输速率更高,等待时间更短,误码更少的方面。在我们的工作中,我们还在仿真结果中解决了Cabuk等人的算法中发现的失步问题,并表明即使在经过同步校正的Cabuk等人的情况下也是如此。在容量和延迟方面,我们提出的方法提供了更好的结果。

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