WiMAX网络中路由协议性能分析

R. Ab Rahman, M. Kassim, C.K.H. Che Ku Yahaya, Mariamah Ismail
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引用次数: 41

摘要

全球微波接入互操作性(WiMAX)是一种弥合固定和移动接入之间差距的技术,为固定和移动用户提供相同的用户体验。对这种类型的移动宽带服务和应用的需求正在迅速增长,因为它为用户提供了在线的自由,无论他们在哪里,以具有竞争力的价格和其他重要的设施,如增加带宽,使用各种移动和漫游设备。最早版本的WiMAX基于IEEE 802.16,针对固定和漫游接入进行了优化,并在IEEE 802.16e的基础上进一步扩展,以支持可移植性和移动性,也称为移动WiMAX。然而,由于节点移动性导致的频繁拓扑变化使得移动WiMAX网络中的路由成为一个具有挑战性的问题。本文对无线网络专用路由协议进行了分析。对移动WiMAX环境下的AODV、DSR和DSDV三种路由协议的性能进行了研究和比较。假设每个用户站在其自己的网络中具有其路由能力。性能矩阵包括包交付分数(PDF)、吞吐量、端到端延迟和被识别的丢包数。本研究使用NS2模拟器进行性能分析比较。结果表明,AODV协议优于DSR和DSDV协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of routing protocol in WiMAX network
Worldwide Interoperability for Microwave Access (WiMAX) is a technology that bridges the gap between fixed and mobile access and offer the same subscriber experience for fixed and mobile user. Demand for such type of mobile broadband services and applications are growing rapidly as it provides freedom to the subscribers to be online wherever they are at a competitive price and other significant facilities such as increasing amounts of bandwidth, using a variety of mobile and roaming devices. The earliest version of WiMAX is based on IEEE 802.16 and is optimized for fixed and roaming access, which is further extended to support portability and mobility based on IEEE 802.16e, also known as Mobile WiMAX. However, frequent topology changes caused by node mobility make routing in Mobile WiMAX networks a challenging problem. This paper presented an analysis on those routing protocols especially designed for wireless networks. A study and comparison on the performance of three routing protocols (AODV, DSR, and DSDV) for Mobile WiMAX environment is done. An assumption of each subscriber station has its routing capabilities within its own network is prepared. The performance matrix includes Packet Delivery fraction (PDF), Throughput, End to End Delay, and number of packet dropped were identified. The study used NS2 simulator for the comparison on the performance analysis. Successfully results found that AODV protocol outperform the DSR and DSDV.
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