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Service time estimation in multiple-rate IEEE 802.11 WLANs with and without opportunistic cooperative mechanism under unsaturated load conditions

机译:具有和不具有机会合作机制的多速率IEEE 802.11 WLAN在非饱和负载条件下的服务时间估计

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摘要

Wireless media servers and real-time applications are becoming increasingly popular in most homes. Wireless network latency is a key factor in many applications. The objective of this paper is to derive an analytical framework to estimate the latency in terms of the average service time of the most used multiple-rate wireless link protocol, i.e., IEEE 802.11. A number of analytical models for IEEE 802.11 exists in the literature. However, to the best of the authors' knowledge, no general analytical model exists that jointly models IEEE 802.11 latency under the assumption of using multiple transmission rates and unsaturated load traffic. Additionally, the proposed model can also be extended to cooperative variants of IEEE 802.11 which exploit the presence of both multiple nodes and multiple transmission rates to improve network performance. In particular, in this paper, the extension to model COBRA MAC, an opportunistic cooperative variant of IEEE 802.11 is presented. The derived model is validated against simulation results, revealing good match between model and simulation. Also, results showing the performance benefits achieved by COBRA MAC over IEEE 802.11 are presented.
机译:无线媒体服务器和实时应用程序在大多数家庭中变得越来越流行。无线网络延迟是许多应用程序中的关键因素。本文的目的是推导一个分析框架,根据最常用的多速率无线链路协议(即IEEE 802.11)的平均服务时间来估计延迟。文献中存在许多针对IEEE 802.11的分析模型。但是,据作者所知,在使用多个传输速率和非饱和负载流量的假设下,不存在可以对IEEE 802.11延迟进行联合建模的通用分析模型。另外,提出的模型还可以扩展到IEEE 802.11的协作变体,该变体利用多个节点和多个传输速率的存在来改善网络性能。特别是,在本文中,提出了对模型COBRA MAC的扩展,这是IEEE 802.11的一种机会合作变体。对照仿真结果验证了导出的模型,显示出模型与仿真之间的良好匹配。此外,结果显示了COBRA MAC通过IEEE 802.11实现的性能优势。

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