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A multi-hop multi-source Algebraic Watchdog

机译:多跳多源代数看门狗

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In our previous work (‘An Algebraic Watchdog for Wireless Network Coding’), we proposed a new scheme in which nodes can detect malicious behaviors probabilistically, police their downstream neighbors locally using overheard messages; thus, provide a secure global self-checking network. As the first building block of such a system, we focused on a two-hop network, and presented a graphical model to understand the inference process by which nodes police their downstream neighbors and to compute the probabilities of misdetection and false detection. In this paper, we extend the Algebraic Watchdog to a more general network setting, and propose a protocol in which we can establish trust in coded systems in a distributed manner. We develop a graphical model to detect the presence of an adversarial node downstream within a general two-hop network. The structure of the graphical model (a trellis) lends itself to well-known algorithms, such as Viterbi algorithm, that can compute the probabilities of misdetection and false detection. Using this as a building block, we generalize our scheme to multi-hop networks. We show analytically that as long as the min-cut is not dominated by the Byzantine adversaries, upstream nodes can monitor downstream neighbors and allow reliable communication with certain probability. Finally, we present preliminary simulation results that support our analysis.
机译:在我们之前的工作中('无线网络编码的代数看门狗'),我们提出了一种新的方案,其中节点可以检测恶意行为概率,警察他们的下游邻居使用过夜消息;因此,提供安全的全球自检网络。作为这种系统的第一构建块,我们专注于两个跳网络,并呈现了一个图形模型,以了解节点警察其下游邻居并计算误报和错误检测的概率的推理过程。在本文中,我们将代数看门狗扩展到更一般的网络设置,并提出了一种协议,其中我们可以以分布式方式在编码系统中建立信任。我们开发了一个图形模型,以检测一般的两跳网络中下游的对抗节点的存在。图形模型(TELLELIS)的结构将自身带来了众所周知的算法,例如维特比算法,可以计算误报和错误检测的概率。使用此作为构建块,我们将我们的计划概括为多跳网络。我们在分析上表明,只要敏感的未被拜占庭对手占主导地位,上游节点就可以监控下游邻居并允许与某些概率可靠的通信。最后,我们提出了支持我们分析的初步仿真结果。

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