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Topology Enhancements in Wireless Multihop Networks: A Top-Down Approach

机译:无线多跳网络中的拓扑增强:自上而下的方法

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Contemporary traffic demands call for efficient infrastructures capable of sustaining increasing volumes of social communications. In this work, we focus on improving the properties of wireless multihop networks with social features through network evolution. Specifically, we introduce a framework, based on inverse Topology Control (iTC), for distributively modifying the transmission radius of selected nodes, according to social paradigms. Distributed iTC mechanisms are proposed for exploiting evolutionary network churn in the form of edgeode modifications, without significantly impacting available resources. We employ continuum theory for analytically describing the proposed top-down approach of infusing social features in physical topologies. Through simulations, we demonstrate how these mechanisms achieve their goal of reducing the average path length, so as to make a wireless multihop network scale like a social one, while retaining its original multihop character. We study the impact of the proposed topology modifications on the operation and performance of the network with respect to the average throughput, delay, and energy consumption of the induced network.
机译:当前的交通需求要求有能够维持不断增长的社交交流量的高效基础设施。在这项工作中,我们专注于通过网络演进来提高具有社交功能的无线多跳网络的性能。具体来说,我们根据社交范例引入了一种基于逆拓扑控制(iTC)的框架,用于分布式修改所选节点的传输半径。提出了分布式iTC机制,用于以边缘/节点修改的形式利用进化网络搅动,而不会显着影响可用资源。我们采用连续体理论来分析性地描述所提出的自上而下的在物理拓扑中注入社会特征的方法。通过仿真,我们演示了这些机制如何实现减少平均路径长度的目标,从而使无线多跳网络规模像社交网络一样,同时保留其原始多跳特性。我们针对引入的网络的平均吞吐量,延迟和能耗研究了提议的拓扑修改对网络的运行和性能的影响。

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