Delays and mixing times in random-access networks

N. Bouman, S. Borst, J. V. Leeuwaarden
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引用次数: 14

Abstract

We explore the achievable delay performance in wireless random-access networks. While relatively simple and inherently distributed in nature, suitably designed backlog-based random-access schemes provide the striking capability to match the optimal throughput performance of centralized scheduling mechanisms. The specific type of activation rules for which throughput optimality has been established, may however yield excessive backlogs and delays. Motivated by that issue, we examine whether the poor delay performance is inherent to the basic operation of these schemes, or caused by the specific kind of activation rules. We derive delay lower bounds for backlog-based activation rules, which offer fundamental insight in the cause of the excessive delays. For fixed activation rates we obtain lower bounds indicating that delays and mixing times can grow dramatically with the load in certain topologies as well.
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随机存取网络中的延迟和混合时间
我们探讨了无线随机接入网络中可实现的延迟性能。适当设计的基于积压的随机访问方案相对简单且本质上是分布式的,它提供了惊人的能力来匹配集中式调度机制的最佳吞吐量性能。然而,为其建立吞吐量最优性的特定类型的激活规则可能会产生过多的积压和延迟。基于这一问题,我们研究了延迟性能差是这些方案的基本操作所固有的,还是由特定类型的激活规则引起的。我们导出了基于待定激活规则的延迟下界,这为过度延迟的原因提供了基本的见解。对于固定的激活率,我们得到的下界表明,在某些拓扑中,延迟和混合时间也会随着负载的增加而急剧增长。
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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