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FIRM: Flow-based Interference-aware Route Management in Wireless Mesh Networks

机译:公司:无线网状网络中基于流动的干扰感知路由管理

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In IEEE 802.11-based wireless mesh networks, routing is crucial in achieving high throughput in face of both interflow and intra-flow interference. Prior work focuses on finding the maximum available bandwidth path when a new flow enters the network. However, few have considered the effect of the new flow on the throughput of the existing flows. We propose a routing framework that uses the topology map of a mesh network with the carrier sense and interference relations and estimates the available bandwidth of a candidate path. We propose two algorithms for finding a route for a new flow: (1) FIRM searches for the maximum bandwidth path for the new flow, and (2) FIRM+ not only considers the available bandwidth of a path for the new flow, but also the amount of throughput degradation of existing flows. We implement and evaluate FIRM and FIRM+ with the IRU routing algorithm on a 15 node indoor IEEE 802.11a testbed. Various experiments reveal that FIRM+ achieves the highest total throughput of all flows.
机译:在基于IEEE 802.11的无线网状网络中,路由对于实现高吞吐量,在面对交互和流动间干扰方面实现高吞吐量至关重要。在新流进入网络时,先前的工作侧重于查找最大可用带宽路径。然而,很少有人认为新流程对现有流量的吞吐量的影响。我们提出了一种路由框架,它使用网格网络的拓扑图与载波侦听和干扰关系,并估计候选路径的可用带宽。我们提出了两个用于查找新流程的路由的算法:(1)公司搜索新流程的最大带宽路径,(2)公司+不仅考虑了新流程的可用带宽,还考虑了路径的可用带宽现有流量的吞吐量劣化量。我们在一个15节点室内IEEE 802.11a上的IRU路由算法实现和申请公司和公司+。各种实验表明,公司+实现了所有流动的总吞吐量。

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