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Energy-efficient analysis of an IEEE 802.11 PCF MAC protocol based on WLAN

机译:基于WLAN的IEEE 802.11 PCF MAC协议的节能分析

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The point coordination function (PCF) of the IEEE 802.11 standard represents a well-known medium access control (MAC) protocol providing quality-of-service guarantees in wireless local area networks (WLANs). However, few papers theoretically analyze energy efficiency. This paper presents a Parallel Gated Poll (PGP) access mechanism that exploits the PCF defined in the IEEE 802.11. The basic idea is, during the contention free period, idle stations can save energy by turning into sleep and active stations exchange data packet under a gated service polling scheme to improve the energy efficiency. Besides, the mean cycle analysis model is setup to evaluate the energy efficiency of a typically PCF protocol and PGP protocol. By applying the classic 1-limited and parallel gated polling model, the closed expressions of energy efficiency of PCF and PGP are formulated respectively. Simulations show that our analytical results are very accurate with the simulation results. Both analytical and simulation results show the high energy efficiency of PGP.
机译:IEEE 802.11标准的点协调功能(PCF)代表一种众所周知的媒体访问控制(MAC)协议,该协议在无线局域网(WLAN)中提供服务质量保证。但是,很少有论文从理论上分析能效。本文提出了一种并行门控轮询(PGP)访问机制,该机制利用了IEEE 802.11中定义的PCF。基本思想是,在无争用期间,空闲站点可以通过进入睡眠状态来节省能源,而活动站点可以在门控服务轮询方案下交换数据包以提高能源效率。此外,建立平均周期分析模型以评估典型PCF协议和PGP协议的能效。通过应用经典的一限和并行门控轮询模型,分别建立了PCF和PGP的能效闭合表达式。仿真表明我们的分析结果与仿真结果非常准确。分析和仿真结果均显示了PGP的高能效。

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