下一代多跳无线网状网络的资源规划和分组转发

Ting-Yu Lin, K. Fan
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摘要

在无线网状网络领域的早期工作大多假设在每个节点上配置一个单一接口。在本文中,我们考虑下一代无线网状网络,其中每个节点可能配备多个无线电接口,每个接口能够在几种模式中的一种、几种信道中的一种中运行,并且每个接口都能够支持多种调制。例如,从现成的组件中,可以很容易地构建具有多个IEEE 802.11a/b/g无线电接口的网格节点。我们的目标是在这样的环境中解决资源规划和数据包转发问题。所提出的方法是基于线性规划的网络流原理和无线电信道接入/干扰模型。给定网络拓扑结构、流量需求和网关容量,我们将展示如何分配网络接口卡及其通道以充分利用通道带宽。该结果可用于无线互联网服务提供商在硬件约束下规划其网络,从而使其利润最大化。据我们所知,这是第一个在无线网状网络中解决资源规划的工作。我们的数值结果表明,在适度的网络层公平性下,聚合网络吞吐量有了显著的改善。
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Resource Planning and Packet Forwarding for Next-generation Multi-hop Wireless Mesh Networks
Most earlier works in the area of wireless mesh network assume a single interface being equipped in each node. In this paper, we consider the next-generation wireless mesh networks in which each node may be equipped with multiple radio interfaces, each capable of running in one of several modes, one of several channels, and each capable of supporting multiple modulations. For example, from off-the-shelf components, one can easily construct a mesh node with multiple IEEE 802.11a/b/g radio interfaces. Our goal is to address the resource planning and packet forwarding issues in such an environment. The proposed methodology is based on linear programming with network flow principles and radio channel access/interference models. Given a network topology, traffic requirements, and gateway capacities, we show how to allocate network interface cards and their channels to fully utilize channel bandwidths. The results can be used by a wireless Internet service provider to plan their networks under a hardware constraint so as to maximize their profits. To the best of our knowledge, this is the first work addressing resource planning in a wireless mesh network. Our numerical results show significant improvement in terms of aggregate network throughput with moderate network-layer fairness.
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