面向组播流的移动自组织网络路由协议的开发

ACM SE '10 Pub Date : 2010-04-15 DOI:10.1145/1900008.1900134
Thomas DeMarcus, N. Meghanathan
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引用次数: 0

摘要

本研究项目旨在实现移动自组织网络(manet)的多播路由协议。MANET节点依靠有限的电池电量运行,并在动态创建的网络中自由移动。由于节点的自主移动和有限的传输范围,节点频繁地重新配置相邻节点之间的链路,使得这些节点必须知道自己相对于网络中其他节点的位置。节点之间连接的频繁变化可能导致各种问题,例如由于大量信息开销和传输过程中的信息丢失而导致不必要的电池使用。为了寻找最佳路由协议以减少路由发现开销,本研究在最佳稳定路径单播路由协议之一的面向流路由协议(Flow-Oriented routing protocol, FORP)的基础上开发了一种稳定的组播路由协议。开发的协议将被称为M-FORP。M-FORP将在不同的节点迁移率和密度条件下进行仿真。我们还将M-FORP的性能与其他几个路由协议进行比较,如基于节点速度的稳定路径(NVSP)和带宽高效多播路由协议(BEMRP)。结果将用于确定哪种路由协议在解决过多的信息开销问题方面最有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of the multicast flow oriented routing protocol for mobile ad hoc networks
This research project is geared towards the implementation of a multicast routing protocol for Mobile Ad Hoc Networks (MANETs). MANET nodes operate on a limited battery power and move freely within a dynamically created network. Due to autonomous node movement and limited transmission range, nodes frequently reconfigure links between neighboring nodes making it imperative those nodes know there position in relation to other nodes in the network. The frequent changes in connectivity between nodes can cause various problems such as unwanted battery usage due to large amounts of information overhead and the loss of information during transmissions. In an effort to find the best routing protocol to cut down on route discovery overhead, this research involves the development of a stable multicast routing protocol based on the Flow-Oriented Routing Protocol (FORP), one of the best stable path unicast routing protocol. The developed protocol will be called M-FORP. Simulations of M-FORP will be conducted under different conditions of node mobility and density. We will also compare the performance of M-FORP with a couple of other routing protocols such as node velocity-based stable path (NVSP) and Bandwidth Efficient Multicast Routing Protocol (BEMRP). The results will be used to determine which routing protocol would be most efficient in solving the excess information overhead problem.
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