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Distributed Admission Control in Wireless Mesh Networks: Models, Algorithms, and Evaluation

机译:无线网状网络中的分布式准入控制:模型,算法和评估

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摘要

Wireless mesh networks (WMNs) have attracted increasing attention from the research community as a high-performance and low-cost solution to last-mile broadband Internet access. In WMNs, admission control is deployed to efficiently control different traffic loads and prevent the network from being overloaded. This paper introduces a distributed admission control scheme for WMNs, namely, routing on cliques admission control (RCAC). In particular, we propose an analytical model to compute the appropriate acceptance ratio and guarantee that the packet loss probability (PLP) in the network does not exceed a threshold value. The model also allows computing end-to-end delay to process flow requests with delay constraints. RCAC achieves scalability since it partitions the network into cliques, and only clique heads (CHs) are involved in the admission-control procedure. Using extensive simulations, we demonstrate that our RCAC achieves high resource utilization by providing lower blocking probabilities in a dynamic traffic-load environment while satisfying quality-of-service (QoS) constraints in terms of PLP and end-to-end delay. Moreover, we show that a contention access (CA) enforced with our RCAC outperforms the mesh deterministic access (MDA).
机译:无线网状网络(WMN)作为针对最后一英里宽带Internet访问的高性能和低成本解决方案,引起了研究界的越来越多的关注。在WMN中,部署了准入控制以有效控制不同的流量负载并防止网络过载。本文介绍了一种针对WMN的分布式准入控制方案,即基于团体准入控制(RCAC)的路由。特别是,我们提出了一种分析模型来计算适当的接受率,并保证网络中的丢包率(PLP)不超过阈值。该模型还允许计算端到端延迟,以处理具有延迟约束的流请求。 RCAC实现了可伸缩性,因为它将网络划分为多个集团,并且准入控制过程仅涉及集团头(CH)。通过广泛的仿真,我们证明了我们的RCAC通过在动态流量负载环境中提供较低的阻塞概率,同时满足了PLP和端到端延迟方面的服务质量(QoS)约束,从而实现了较高的资源利用率。此外,我们表明,使用RCAC强制执行的竞争访问(CA)优于网格确定性访问(MDA)。

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