基于中心性的功率控制在无线网络热点缓解中的应用

P. Pathak, R. Dutta
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引用次数: 3

摘要

在大规模多跳无线网络中采用最短路径路由时,位于网络中心附近的节点必须为其他节点执行不成比例的中继工作。为了解决这一问题,采用了多种发散路由方案,将数据路由到避免中心的发散路径上。虽然它们实现了更好的负载平衡,但由于它们的路由路径较长,总体中继显着增加。在本文中,我们提出功率控制作为一种平衡中继负载和减轻无线网络热点的方法。使用基于中心性概念的启发式方法,我们表明,如果我们只增加预期中继更多数据包的节点的功率水平,即使使用最短路径路由也可以实现显着的中继负载平衡。与发散路由不同,这种负载均衡策略适用于任意拓扑结构。此外,本文还表明,在许多不同的拓扑中,基于中心性的功率控制可以产生更好的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Centrality-Based Power Control for Hot-Spot Mitigation in Wireless Networks
When shortest path routing is employed in large scale multi-hop wireless networks, nodes located near the center of the network have to perform disproportionate amount of relaying for others. To solve the problem, various divergent routing schemes are used which route the data on center-avoiding divergent routing paths. Though they achieve better load balancing, overall relaying is increased significantly due to their longer routing paths. In this paper, we propose power control as a way for balancing relay load and mitigating hot-spots in wireless networks. Using a heuristic based on the concept of centrality, we show that if we increase the power levels of only the nodes which are expected to relay more packets, significant relay load balancing can be achieved even with shortest path routing. Different from divergent routing schemes, such load balancing strategy is applicable to any arbitrary topology. Also, it is shown that centrality based power control results into better throughput capacity in many different topologies.
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