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Dynamic node-disjoint multipath routing for millimeter wave networks using directional antennas

机译:使用定向天线的毫米波网络动态节点不相交多径路由

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In millimeter wave (mmW) networks, for example 60 GHz networks, nodes in the network have to use directional antennas to communicate with each other to overcome high propagation losses and achieve high data rates. The narrow main beam widths of directional antennas also provide several benefits such as high gain and high spatial reuse. In this paper, we propose a dynamic node-disjoint multipath routing protocol for 60 GHz networks to improve the capacity of the network by utilizing the benefit of directional antennas. We propose three Route Request broadcasting schemes and three Route Request forwarding schemes in the route discovery stage along with a greedy node-disjoint path selection algorithm. The performance of each proposed scheme is evaluated using the ns-2 simulator. Simulation results demonstrate that by using appropriate Route Request broadcasting and forwarding schemes, node-disjoint paths can be found for each pair of source and destination. By using these node-disjoint paths, the aggregated throughput of the network is higher on average when there are one or more TCP flows in the network.
机译:在毫米波(mmW)网络(例如60 GHz网络)中,网络中的节点必须使用定向天线相互通信,以克服高传播损耗并实现高数据速率。定向天线的窄主波束宽度还提供了一些好处,例如高增益和高空间复用率。在本文中,我们提出了一种适用于60 GHz网络的动态节点不相交多径路由协议,以利用定向天线的优势来提高网络的容量。我们在路由发现阶段提出了三种路由请求广播方案和三种路由请求转发方案,以及贪婪的节点不相交路径选择算法。使用ns-2模拟器评估每个建议方案的性能。仿真结果表明,通过使用适当的“路由请求”广播和转发方案,可以为每对源和目标找到不相交的节点路径。通过使用这些节点不相交的路径,当网络中有一个或多个TCP流时,网络的聚合吞吐量平均较高。

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