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Optimal Routing for Wireless Mesh Networks With Dynamic Traffic Demand

机译:具有动态流量需求的无线网状网络的最佳路由

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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. Traffic routing plays a critical role in determining the performance of a wireless mesh network. To investigate the best routing solution, existing work proposes to formulate the mesh network routing problem as an optimization problem. In this problem formulation, traffic demand is usually implicitly assumed as static and known a priori. Contradictorily, recent studies of wireless network traces show that the traffic demand, even being aggregated at access points, is highly dynamic and hard to estimate. Thus, in order to apply the optimization-based routing solution into practice, one must take into account the dynamic and unpredictable nature of wireless traffic demand. This paper presents an integrated framework for wireless mesh network routing under dynamic traffic demand. This framework consists of two important components: traffic estimation and routing optimization. By studying the traces collected at wireless access points, we first present a traffic estimation method which predicts future traffic demand based on its historical data using time-series analysis. This method provides not only the mean value of the future traffic demand estimation but also its statistical distribution. We further investigate the optimal routing strategies for wireless mesh network which take these two forms of traffic demand estimations as inputs. The goal is to balance the traffic load so that minimum congestion will be incurred. This routing objective could be transformed into the throughput optimization problem where the throughput of aggregated flows is maximized subject to fairness constraints that are weighted by the traffic demands. Based on linear programming, we present two routing algorithms which consider the mean value and the statistical distribution of the predicted traffic demands, respectively. The trace-driven simulation study demonstrates that our integrated traffic estimation and routing optimization framework can effectively incorporate the traffic dynamics in mesh network routing.
机译:无线网状网络作为对最后一英里宽带Internet访问的高性能和低成本解决方案已引起越来越多的关注和部署。流量路由在确定无线网状网络的性能方面起着至关重要的作用。为了研究最佳的路由解决方案,现有工作提出将网状网络路由问题表述为优化问题。在此问题的表述中,通常将流量需求隐式假定为静态,并且是先验的。相反,最近对无线网络跟踪的研究表明,即使是在接入点处聚集的流量需求,也是高度动态的并且难以估计。因此,为了将基于优化的路由解决方案应用到实践中,必须考虑无线流量需求的动态和不可预测的性质。本文提出了在动态流量需求下无线网状网络路由的集成框架。该框架包含两个重要组件:流量估计和路由优化。通过研究在无线访问点处收集到的跟踪信息,我们首先提出一种流量估计方法,该方法可以使用时间序列分析根据其历史数据预测未来的流量需求。该方法不仅提供了未来交通需求估算的平均值,还提供了其统计分布。我们进一步研究了无线网状网络的最佳路由策略,该策略将这两种形式的流量需求估算作为输入。目标是平衡流量负载,以便将拥塞降至最低。此路由目标可以转换为吞吐量优化问题,在此问题上,受流量需求加权的公平性约束会最大程度地提高聚合流的吞吐量。基于线性规划,我们提出了两种路由算法,分别考虑了预测交通需求的平均值和统计分布。跟踪驱动的仿真研究表明,我们集成的流量估计和路由优化框架可以有效地将流量动态纳入网格网络路由中。

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