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Upper Bounds to the Performance of Cooperative Traffic Relaying in Wireless Linear Networks

机译:无线线性网络中协作流量中继性能的上限

摘要

Wireless networks with linear topology, where nodes generate their own traffic and relay other nodes' traffic, have attracted increasing attention. Indeed, they well represent sensor networks monitoring paths or streets, as well as multihop networks for videosurveillance of roads or vehicular traffic. We study the performance limits of such network systems when (i) the nodes' transmissions can reach receivers farther than one-hop distance from the sender, (ii) the transmitters cooperate in the data delivery, and (iii) interference due to concurrent transmissions is taken into account. By adopting an information-theoretic approach, we derive analytical bounds to the achievable data rate in both the cases where the nodes have full-duplex and half-duplex radios. The expressions we provide are mathematically tractable and allow the analysis of multihop networks with a large number of nodes. Our analysis highlights that increasing the number of coop- erating transmitters beyond two leads to a very limited gain in the achievable data rate. Also, for half-duplex radios, it indicates the existence of dominant network states, which have a major influence on the bound. It follows that efficient, yet simple, communication strategies can be designed by considering at most two cooperating transmitters and by letting half-duplex nodes operate according to the aforementioned dominant states
机译:具有线性拓扑的无线网络(节点在其中生成自己的流量并中继其他节点的流量)引起了越来越多的关注。实际上,它们很好地代表了监控路径或街道的传感器网络,以及用于道路或车辆交通视频监控的多跳网络。当(i)节点的传输可以到达距离发送方一跳距离远的接收方,(ii)传输方合作进行数据传输以及(iii)并发传输造成的干扰时,我们研究此类网络系统的性能极限。被考虑在内。通过采用信息理论方法,我们在节点具有全双工和半双工无线电的情况下,得出了可达到的数据速率的分析范围。我们提供的表达式在数学上易于处理,并且可以分析具有大量节点的多跳网络。我们的分析突出表明,将协作发射机的数量增加到两个以上会导致可实现的数据速率获得非常有限的增益。同样,对于半双工无线电,它表明存在主导网络状态,这对边界有重大影响。因此,可以通过考虑最多两个协作的发射机并通过让半双工节点根据上述主导状态进行操作来设计有效而简单的通信策略。

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