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Throughput Optimization Routing Under Uncertain Demand for Wireless Mesh Networks

机译:无线网状网络不确定需求下的吞吐量优化路由

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Wireless mesh networks have attracted increasing attention and deployment as a high-performance and low-cost solution to last-mile broadband Internet access. Network routing plays a critical role in determining the performance of a wireless mesh network. To study the best mesh network routing strategy which can maximize the network throughput while satisfying the fairness constraints, existing research proposes to formulate the mesh network routing problem as an optimization problem. These works usually make ideal assumptions such as known static traffic input. Whether they could be applied for practical use under the highly dynamic and uncertain traffic in wireless mesh network is still an open issue. The main objective of this paper is to understand the effects of traffic uncertainty in wireless mesh networks and consider these effects in throughput maximization routing. It identifies the appropriate optimization framework that could integrate the statistical user traffic demand model into a tractable throughput maximization problem. The trace-driven simulation study demonstrates that our algorithm can effectively incorporate the traffic demand uncertainty in routing optimization, and outperform the throughput maximization routing which only considers static traffic demand.
机译:无线网状网络引起了越来越多的关注和部署,作为对船上宽带互联网接入的高性能和低成本解决方案。网络路由在确定无线网状网络的性能方面发挥着关键作用。为研究最佳的网状网络路由策略,该策略可以在满足公平约束的同时最大化网络吞吐量,现有的研究建议将网格网络路由问题作为优化问题。这些作品通常是诸如已知的静态流量输入的理想假设。无论是在无线网状网络中高度动态和不确定的流量下应用它们是否可以应用于实际应用仍然是一个开放的问题。本文的主要目标是了解交通不确定性在无线网状网络中的影响,并考虑吞吐量最大化路由中的这些效果。它标识了适当的优化框架,可以将统计用户流量需求模型集成到易吞吐量最大化问题中。追踪仿真研究表明,我们的算法可以有效地纳入路由优化中的业务需求不确定性,并且优于吞吐量最大化路由,该路由仅考虑静态流量需求。

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