多无线电多速率多通道无线网状网络中网络拓扑与信道分配的相互作用

Tehuang Liu, W. Liao
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引用次数: 10

摘要

在无线网状网络中,采用多信道可以有效地提高网络容量。在多无线电多信道无线网络中,信道分配问题是为每个无线电分配一个信道,使网络容量最大化。由于两个节点是否能够相互通信取决于它们使用的通道,因此不同的通道分配可能导致不同的网络拓扑结构。大多数现有的信道分配算法都是基于特定的网络拓扑结构,如树、a连通图等。这个预先确定的网络拓扑然后用作信道分配算法的输入。本文研究了信道分配算法的输入网络拓扑结构对网络性能的重要性,提出了一种为现有信道分配算法构建高效输入网络拓扑结构的算法,以提高多信道带来的容量增益。仿真结果表明,该算法在不修改现有信道分配算法的前提下,显著提高了网络容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interplay of Network Topology and Channel Assignment in Multi-Radio Multi-Rate Multi-Channel Wireless Mesh Networks
Employing multiple channels can effectively improve the network capacity in wireless mesh networks (WMNs). In multi-radio multi-channel WMNs, the channel assignment problem is to assign each radio a channel such that the network capacity is maximized. Since whether two nodes can communicate with each other depends on the channels they use, different channel assignments may lead to different network topologies. Most existing channel assignment algorithms are based on specific network topologies, such as trees, A-connected graphs, etc. This pre-determined network topology is then used as the input of the channel assignment algorithm. In this paper, we study the importance of the input network topology of channel assignment algorithms on the network performance, and propose an algorithm for constructing efficient input network topologies for existing channel assignment algorithms to increase the capacity gain due to multiple channels. The simulation results show that the proposed algorithm improves the network capacity dramatically without the need to modify existing channel assignment algorithms.
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