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Capacity of Large-Scale CSMA Wireless Networks

机译:大规模CSMA无线网络的容量

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In the literature, asymptotic studies of multihop wireless network capacity often consider only centralized and deterministic time-division multiple-access (TDMA) coordination schemes. There have been fewer studies of the asymptotic capacity of large-scale wireless networks based on carrier-sensing multiple access (CSMA), which schedules transmissions in a distributed and random manner. With the rapid and widespread adoption of CSMA technology, a critical question is whether CSMA networks can be as scalable as TDMA networks. To answer this question and explore the capacity of CSMA networks, we first formulate the models of CSMA protocols to take into account the unique CSMA characteristics not captured by existing interference models in the literature. These CSMA models determine the feasible states, and consequently the capacity of CSMA networks. We then study the throughput efficiency of CSMA scheduling as compared to TDMA. Finally, we tune the CSMA parameters so as to maximize the throughput to the optimal order. As a result, we show that CSMA can achieve throughput as $Omega({1over sqrt{n}})$ , the same order as optimal centralized TDMA, on uniform random networks. Our CSMA scheme makes use of an efficient backbone–peripheral routing scheme and a careful design of dual carrier-sensing and dual channel scheme. We also address implementation issues of our CSMA scheme.
机译:在文献中,对多跳无线网络容量的渐进研究通常只考虑集中式和确定性的时分多址(TDMA)协调方案。基于载波侦听多路访问(CSMA)的大规模无线网络渐近容量的研究很少,该技术以分布式和随机方式调度传输。随着CSMA技术的迅速和广泛采用,一个关键问题是CSMA网络是否可以像TDMA网络一样可扩展。为了回答这个问题并探索CSMA网络的能力,我们首先制定CSMA协议模型,以考虑到现有干扰模型无法捕获的独特CSMA特性。这些CSMA模型确定了可行的状态,并因此确定了CSMA网络的容量。然后,我们研究与TDMA相比CSMA调度的吞吐效率。最后,我们调整CSMA参数,以便将吞吐量最大化至最佳顺序。结果,我们证明CSMA可以通过 $ Omega({1 over sqrt {n}})$ 来实现吞吐量。在统一随机网络上与最佳集中式TDMA的顺序相同。我们的CSMA方案利用了高效的骨干-外围路由方案以及精心设计的双载波侦听和双通道方案。我们还将解决CSMA计划的实施问题。

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