网状网络中基于自组织的拓扑控制方法与研究

V. Mirchandani, A. Prodan, J. Debenham
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引用次数: 8

摘要

多无线网状网络中信道智能分配的自组织算法对多无线网状网络的正常运行具有重要意义。自组织算法的目标是减少网络的总体干扰,增加网络的总容量。这可以通过解决与MR-WMN的自组织相关的两个主要挑战——可伸缩性和稳定性——来实现。在本文中,我们首先提出了一种通用的自组织算法来解决这两个挑战。基本的方法是分布式的、轻量级的、协作的多代理系统,它保证了可伸缩性。其次,我们评估了两组初始化方案下提出的自组织算法的性能。初始化过程通过网格节点间连通性的空间分布实现MR-WMN的拓扑控制。结果已经获得了MR-WMN节点密度和拓扑的现实场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A method and study of topology control based self-organization in Mesh Networks
An algorithm for self-organization that assigns the channels intelligently in multi-radio wireless mesh networks (MR-WMN) is important for the proper operation of MR-WMN. The aim of the self-organization algorithm is to reduce the overall interference and increase the aggregate capacity of the network. This can be possible by addressing the two major challenges that are associated with the self-organization of MR-WMN - scalability and stability. In this paper, we have first proposed a generic self-organization algorithm that addresses these two challenges. The basic approach is that of a distributed, light-weight, co-operative multiagent system that guarantees scalability. Second, we have evaluated the performance of the proposed self-organization algorithm for two sets of initialization schemes. The initialization process results in a topology control of MR-WMN by way of spatial distribution of connectivity between the mesh nodes. The results have been obtained for realistic scenarios of MR-WMN node densities and topologies.
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