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Flexible relay selection for secure communication in two-hop wireless networks

机译:灵活的中继选择,可确保两跳无线网络中的安全通信

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摘要

This work considers two-hop wireless networks in the presence of eavesdroppers with unknown channels and locations, and proposes a new transmission protocol with flexible relay selection to achieve secure and reliable communication in such networks. For a two-hop network with n system nodes, the new protocol first identifies the k (1 ≤ k ≤ n) relay candidate nodes with the best links to both source and destination and then randomly selects one among them for message relay, such that a flexible tradeoff between eavesdropper tolerance capability and load-balance capability can be controlled by a proper setting of parameter k. Theoretical analysis is further provided to help us understand the eavesdropper tolerance capability of the new protocol. While previous works mainly focus on exploring the asymptotic behavior and scaling law results for infinitely large networks, this paper considers a more practical network with finite number of system nodes, and provides a theoretical analysis to determine the exact results on the number of eavesdroppers one network can tolerate when the new protocol is adopted to ensure a desired performance in terms of the maximum allowed secrecy outage probability and transmission outage probability.
机译:这项工作考虑了存在未知信道和位置的窃听者的情况下的两跳无线网络,并提出了一种具有灵活中继选择的新传输协议,以在此类网络中实现安全可靠的通信。对于具有n个系统节点的两跳网络,新协议首先确定具有到源和目的地的最佳链接的k(1≤k≤n)个中继候选节点,然后随机选择其中一个进行消息中继,这样可以通过适当设置参数k来控制窃听者的容忍能力和负载平衡能力之间的灵活权衡。进一步提供了理论分析,以帮助我们了解新协议的窃听者容忍能力。尽管先前的工作主要集中在探索无限大网络的渐近行为和缩放定律结果,但本文考虑了系统节点数量有限的更实用的网络,并提供了理论分析来确定关于一个网络的窃听者数目的准确结果当采用新协议来确保期望的性能时,在最大允许的保密中断概率和传输中断概率方面,用户可以忍受。

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