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Performance model for IEEE 802.11s wireless mesh network deployment design

机译:IEEE 802.11s无线网状网络部署设计的性能模型

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摘要

This paper presents a performance model developed for the deployment design of IEEE 802.11s Wireless Mesh Networks (WMN). The model contains seven metrics to analyze the state of WMN, and novel mechanisms to use multiple evaluation criteria in WMN performance optimization. The model can be used with various optimization algorithms. In this work, two example algorithms for channel assignment and minimizing the number of mesh Access Points (APs) have been developed. A prototype has been implemented with Java, evaluated by optimizing a network topology with different criteria and verified with NS-2 simulations. According to the results, multirate operation, interference aware routing, and the use of multiple evaluation criteria are crucial in WMN deployment design. By channel assignment and removing useless APs, the capacity increase in the presented simulations was between 230% and 470% compared to a single channel configuration. At the same time, the coverage was kept high and the traffic distribution fair among the APs.
机译:本文介绍了一种为IEEE 802.11s无线网状网络(WMN)的部署设计而开发的性能模型。该模型包含用于分析WMN状态的七个指标,以及在WMN性能优化中使用多个评估标准的新颖机制。该模型可以与各种优化算法一起使用。在这项工作中,已经开发了两个示例算法,用于信道分配和最小化网状接入点(AP)的数量。已经用Java实现了一个原型,并通过优化具有不同标准的网络拓扑进行了评估,并通过NS-2仿真进行了验证。根据结果​​,多速率操作,可感知干扰的路由以及使用多个评估标准在WMN部署设计中至关重要。通过信道分配和删除无用的AP,与单信道配置相比,所呈现的模拟中的容量增加在230%至470%之间。同时,覆盖范围保持较高,AP之间的流量分配公平。

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