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Queue Control Based Delay Analysis and Optimization for Wireless Mesh Networks

机译:基于队列控制无线网状网络的延迟分析与优化

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Wireless mesh network is a key technology for next generation wireless networking. Delay is regarded as a critical component in networks quality of service (QoS) especially the real-time applications become increasingly popular in recent years. In this paper, the queue control system of multi-interface multichannel (MIMC) wireless mesh networks (WMNs) is modeled firstly, then we analyse the average queueing delay and the average queueing length, and optimize the average queueing delay by more network interfaces as well as transmitting rate of sending interfaces. Finally analytical explanation and simulation using ns-2 simulator show that use ing MIMC strategy in high traffic loading node is a good approach to optimize network performance, the average queueing delay in nodes with dual-channel dual-interface that do not interfere with each other can be reduced by about 30% compared to the single-channel singleinterface.
机译:无线网状网络是下一代无线网络的关键技术。延迟被视为网络中的关键组成部分服务质量(QoS),尤其是近年来的实时应用变得越来越受欢迎。在本文中,首先建模了多接口多通道(MIMC)无线网状网络(WMNS)的队列控制系统,然后我们分析了平均排队延迟和平均排队长度,并优化了更多网络接口的平均排队延迟以及发送接口的传输速率。最后使用NS-2模拟器的分析说明和仿真显示,使用高流量负载节点中的MIMC策略是优化网络性能的好方法,使用双通道双界面的节点的平均排队延迟不会互相干扰与单通道纯接口相比,可以减少约30%。

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