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Temporal Traffic Dynamics Improve the Connectivity of Ad Hoc Cognitive Radio Networks

机译:时间交通动态改善了Ad Hoc认知无线电网络的连通性

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In an ad hoc cognitive radio network, secondary users access channels temporarily unused by primary users, and the existence of a communication link between two secondary users depends on the transmitting and receiving activities of nearby primary users. Using theories and techniques from continuum percolation and ergodicity, we analytically characterize the connectivity of the secondary network defined in terms of the almost sure finiteness of the multihop delay, and show the occurrence of a phase transition phenomenon while studying the impact of the temporal dynamics of the primary traffic on the connectivity of the secondary network. Specifically, as long as the primary traffic has some temporal dynamics caused by either mobility and/or changes in traffic load and pattern, the connectivity of the secondary network depends solely on its own density and is independent of the primary traffic; otherwise, the connectivity of the secondary network requires putting a density-dependent cap on the primary traffic load. We show that the scaling behavior of the multihop delay depends critically on whether or not the secondary network is instantaneously connected. In particular, we establish the scaling law of the minimum multihop delay with respect to the source–destination distance when the propagation delay is negligible.
机译:在自组织认知无线电网络中,次要用户访问主要用户暂时未使用的信道,并且两个次要用户之间的通信链路的存在取决于附近主要用户的发送和接收活动。利用连续渗流和遍历性的理论和技术,我们根据多跳时延的几乎确定的有限度,分析了定义的次级网络的连通性,并在研究时态动态的影响时显示了相变现象的发生。辅助网络连接上的主要流量。具体来说,只要主要流量具有因移动性和/或流量负载和模式的变化而引起的某些时间动态变化,辅助网络的连通性就完全取决于其自身的密度,并且与主要流量无关。否则,辅助网络的连通性需要在主要流量负载上设置与密度相关的上限。我们表明,多跳延迟的缩放行为主要取决于辅助网络是否立即连接。尤其是,当传播延迟可忽略不计时,我们建立了最小多跳延迟相对于源-目标距离的缩放定律。

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