Analysis of MANET Routing Protocols for Indoor Environment

Analysis of MANET Routing Protocols for Indoor Environment
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DOI:
10.1109/bwcca.2010.42
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发表时间:
2010-11
期刊:
2010 International Conference on Broadband, Wireless Computing, Communication and Applications
影响因子:
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通讯作者:
M. Ikeda;Elis Kulla;Masahiro Hiyama;L. Barolli;M. Takizawa
M. Ikeda;Elis Kulla;Masahiro Hiyama;L. Barolli;M. Takizawa
中科院分区:
其他
文献类型:
--
作者:
M. Ikeda;Elis Kulla;Masahiro Hiyama;L. Barolli;M. Takizawa

文献摘要

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近年来,无线多跳网络,如ad hoc网络,传感器网络和车辆网络已经成为非常重要的研究课题。移动的Ad hoc网络(MANET)是一组无线移动的终端,它们能够动态地组成一个临时的网络,而不需要固定的基础设施或集中的管理。在本文中,我们提出了我们实现的MANET仿真系统,考虑Ad-hoc按需距离矢量(AODV),动态MANET按需(DYMO)和优化链路状态路由(OLSR)协议的无线多跳网络的实现和分析。研究了移动性和拓扑结构变化对移动自组网的影响。我们研究了源和目的地运动对室内环境的影响。在这项工作中,我们考虑了三种模型:静止,源和目的地的运动场景和随机路点模型。我们评估我们的模拟系统的吞吐量,接收到的数据包的数量和跳距离方面的性能。实验结果表明,AODV协议在源节点和目的节点移动的情况下具有良好的性能。AODV协议也为室内环境提供了一种灵活有效的路由选择。
In recent years, wireless multi-hop networks such as ad hoc networks, sensor networks, and vehicular networks have been very important subject for research. Mobile Ad hoc Network (MANET) is a collection of wireless mobile terminals that are able to dynamically form a temporary network without any aid from fixed infrastructure or centralized administration. In this paper, we present the implementation and analysis of our implemented MANET simulation system considering Ad-hoc On demand Distance Vector (AODV), Dynamic MANET On-demand (DYMO) and Optimized Link State Routing (OLSR) protocols for wireless multi-hop networking. We investigate the effect of mobility and topology changing in MANET. We study the impact of source and destination movement for indoor environment. In this work, we consider three models: stationary, source and destination movement scenario and random way-point models. We assess the performance of our simulation system in terms of throughput, number of received packets and hop distance. From the results, we found that the AODV protocol has a good performance when the source and destination nodes are moving. Also the AODV protocol provides a flexible and effective routing for indoor environment.