Capacity of Asynchronous Random-Access Scheduling in Wireless Networks

Deepti Chafekar, Dave Levin, V. S. A. Kumar, M. Marathe, S. Parthasarathy, A. Srinivasan
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引用次数: 24

Abstract

We study the throughput capacity of wireless networks which employ (asynchronous) random-access scheduling as opposed to deterministic scheduling. The central question we answer is: how should we set the channel-access probability for each link in the network so that the network operates close to its optimal throughput capacity? We design simple and distributed channel-access strategies for random-access networks which are provably competitive with respect to the optimal scheduling strategy, which is deterministic, centralized, and computationally infeasible. We show that the competitiveness of our strategies are nearly the best achievable via random-access scheduling, thus establishing fundamental limits on the performance of random- access. A notable outcome of our work is that random access compares well with deterministic scheduling when link transmission durations differ by small factors, and much worse otherwise. The distinguishing aspects of our work include modeling and rigorous analysis of asynchronous communication, asymmetry in link transmission durations, and hidden terminals under arbitrary link-conflict based wireless interference models.
无线网络中异步随机访问调度的容量
我们研究了采用(异步)随机访问调度而不是确定性调度的无线网络的吞吐量容量。我们回答的核心问题是:我们应该如何设置网络中每个链路的通道访问概率,以便网络运行接近其最佳吞吐量?我们为随机访问网络设计了简单和分布式的通道访问策略,这些策略与最优调度策略相比是可证明的竞争策略,最优调度策略是确定性的,集中的,并且计算上是不可行的。我们证明了我们的策略的竞争力几乎是通过随机访问调度可以实现的最佳竞争力,从而建立了随机访问性能的基本限制。我们工作的一个值得注意的结果是,当链路传输持续时间因小因素而不同时,随机访问与确定性调度相比要好得多,否则就差得多。我们工作的突出方面包括异步通信的建模和严格分析,链路传输持续时间的不对称,以及基于任意链路冲突的无线干扰模型下的隐藏终端。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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