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Artificial Noise Generation from Cooperative Relays for Everlasting Secrecy in Two-Hop Wireless Networks

机译:两跳无线网络中永久保密的协作中继产生的人工噪声

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The secure transmission of information in wireless networks without knowledge of eavesdropper channels or locations is considered. Two key mechanisms are employed: artificial noise generation from system nodes other than the transmitter and receiver, and a form of multi-user diversity that allows message reception in the presence of the artificial noise. We determine the maximum number of independently-operating and uniformly distributed eavesdroppers that can be present while the desired secrecy is achieved with high probability in the limit of a large number of system nodes. While our main motivation is considering eavesdroppers of unknown location, we first consider the case where the path-loss is identical between all pairs of nodes. In this case, a number of eavesdroppers that is exponential in the number of systems nodes can be tolerated. In the case of uniformly distributed eavesdroppers of unknown location, any number of eavesdroppers whose growth is sub-linear in the number of system nodes can be tolerated. The proposed approach significantly outperforms a power control approach based on standard multi-user diversity.
机译:考虑了在不了解窃听者信道或位置的情况下无线网络中信息的安全传输。采用了两种关键机制:从除发射器和接收器之外的系统节点生成人为噪声,以及一种允许在人为噪声存在时接收消息的多用户分集形式。我们确定了在大量系统节点的限制下以高概率实现所需保密性时,可以存在的独立操作且均匀分布的窃听程序的最大数量。虽然我们的主要动机是考虑未知位置的窃听者,但我们首先考虑所有节点对之间路径损耗相同的情况。在这种情况下,可以容忍系统节点数量成指数增长的窃听者数量。在未知位置的均匀分布的窃听者的情况下,可以容忍任何数量的,其增长在系统节点数量中为次线性的窃听者。所提出的方法明显优于基于标准多用户分集的功率控制方法。

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