密集无线网络空间复用与协同通信限制研究

Venkatesh Ramaiyan, Anurag Kumar
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引用次数: 5

摘要

我们考虑一个由n个节点组成的密集自组织无线网络,该网络被限制在给定的二维固定区域内。对于Gupta-Kumar随机流量模型和现实的干扰和路径损耗模型(即信道功率增益上有界,下有一个严格的正数),我们研究了网络平均功率约束P macr和节点数n对端到端总吞吐量的影响。网络功率约束P macr与每节点功率约束P macr相关,P macr = np。对于较大的P,我们表明吞吐量饱和为Theta(log(P macr)),与网络中的节点数量无关。对于中等P,可以容纳空间重用以提高端到端吞吐量,我们观察到网络中可行的空间重用数量受到网络直径的限制。实际上,我们观察到网络中的端到端路径损失与网络中可行的空间重用量成反比。这限制了使用和中研究的合作通信技术所能获得的收益,因为这些技术依赖于网络上的直接远程通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Limits of Spatial Reuse and Cooperative Communication for Dense Wireless Networks
We consider a dense ad hoc wireless network comprising n nodes confined to a given two dimensional region of fixed area. For the Gupta-Kumar random traffic model and a realistic interference and path loss model (i.e., the channel power gains are bounded above, and are bounded below by a strictly positive number), we study the scaling of the aggregate end-to-end throughput with respect to the network average power constraint, P macr, and the number of nodes, n. The network power constraint P macr is related to the per node power constraint, P macr, as P macr = np. For large P, we show that the throughput saturates as Theta(log(P macr)), irrespective of the number of nodes in the network. For moderate P, which can accommodate spatial reuse to improve end-to-end throughput, we observe that the amount of spatial reuse feasible in the network is limited by the diameter of the network. In fact, we observe that the end-to-end path loss in the network and the amount of spatial reuse feasible in the network are inversely proportional. This puts a restriction on the gains achievable using the cooperative communication techniques studied in and, as these rely on direct long distance communication over the network.
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