A distributed mobile backbone formation algorithm for wireless ad hoc networks

L. H. Ju, I. Rubin, Kevin Ni, Christopher Wu
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引用次数: 29

Abstract

In this paper, we present a novel fully distributed version of a mobile backbone network topology synthesis algorithm (MBN-TSA) for constructing and maintaining a dynamic backbone in mobile wireless ad hoc networks. The following features induce the key advantages offered by the algorithm: a) the MBN-TSA algorithm is designed to work with the unreliable natural of wireless environment; b) the backbone layout is dynamically formed and locally modified in response to communications link quality fluctuations, nodal failures and nodal mobility; c) a control mechanism employing the BN/spl I.bar/neighbor/spl I.bar/limit threshold as a key parameter, is introduced to control the size of the backbone network (BNet) and improve stability; d) analytical results show that the MBN-TSA has very little control overhead: time complexity in the order of O(l) and message complexity in the order of O(l) per node. In addition, we present an on-demand routing protocol that makes use of the underlying dynamically self-configured MBN network infrastructure. By carrying out extensive simulations, we demonstrate the performance advantages when compared to a non backbone oriented on-demand ad hoc routing protocol such as AODV.
一种用于无线自组网的分布式移动主干网形成算法
本文提出了一种全新的全分布式移动骨干网拓扑综合算法(MBN-TSA),用于在移动无线自组织网络中构建和维护动态骨干网。MBN-TSA算法的主要优势在于:1)MBN-TSA算法是针对无线环境的不可靠特性而设计的;B)根据通信链路质量波动、节点故障和节点迁移动态形成主干网布局并进行局部修改;c)引入以BN/spl I.bar/neighbor/spl I.bar/limit阈值为关键参数的控制机制,控制骨干网(BNet)的规模,提高稳定性;d)分析结果表明,MBN-TSA具有很小的控制开销:时间复杂度为0 (l)阶,消息复杂度为O(l)阶。此外,我们提出了一种利用底层动态自配置MBN网络基础设施的按需路由协议。通过进行广泛的模拟,我们证明了与面向非主干网的按需自组织路由协议(如AODV)相比的性能优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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