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基于IEEE 802.11g的光载无线网络媒体接入控制协议性能分析
引用本文:沈希,徐坤,伍剑,林金桐.基于IEEE 802.11g的光载无线网络媒体接入控制协议性能分析[J].中国通信学报,2013,10(1):81-92.
作者姓名:沈希  徐坤  伍剑  林金桐
摘    要:

收稿时间:2013-02-28;

Performance Analysis of Medium Access Control Protocol for IEEE 802.11g-over-Fiber Networks
SHEN Xi,XU Kun,WU Jian,LIN Jintong.Performance Analysis of Medium Access Control Protocol for IEEE 802.11g-over-Fiber Networks[J].China communications magazine,2013,10(1):81-92.
Authors:SHEN Xi    XU Kun  WU Jian  LIN Jintong
Institution:1State Radio Monitoring Center, Beijing 100037, China
2State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China
Abstract:This paper investigates the Medium Access Control (MAC) protocol performance in the IEEE 802.11g-over-fiber network for different payloads and fiber lengths using Direct Sequence Spread Spectrum-Orthogonal Frequency Division Multiplexing (DSSS- OFDM) and Extended Rate Physicals- Orthogonal Frequency Division Multiplexing (ERP-OFDM) physical layers using basic ac-cess mode, Request to Send/Clear to Send (RTS/CTS) and CTS-to-self mechanisms. The results show that IEEE 802.11g-over-fiber network employing the ERP-OFDM physical layer is much more efficient than that em-ploying the DSSS-OFDM physical layer, with regards to both throughput and delay. For a given maximum throughput/minimum delay, the tradeoff among the access mechanism, the fiber length, and the payload size must be considered. Our quantified results give a se-lection basis for the operators to quickly select suitable IEEE 802.11g physical layers and the different access mechanisms, and accurately predict the data throughput and delay given the specific parameters.
Keywords:radio over fiber  network capac-ity  wireless fidelity
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