IEEE 802.11无线局域网中改进的点协调功能

A. Kanjanavapastit, B. Landfeldt
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引用次数: 11

摘要

随着无线技术的发展,无线局域网作为固定接入技术的一种替代方案正变得越来越广泛。IEEE 802.11标准在不同的标准中最受欢迎,目前既在企业内部部署,也用于公共访问。802.11标准中基本介质访问的缺点之一是它对实时流量的支持相对较差。为了提供这种支持,MAC层实现了点协调功能(PCF)。但是,由于PCF基于集中式轮询协议,因此由于轮询开销和在轮询站没有任何数据要传输的情况下的空数据包而浪费了一些带宽。为了减少浪费,提高信道利用率,本文提出了一种改进版的标准PCF。修改后的PCF采用分布式轮询协议(DPP)作为上行链路传输的访问机制。修改后的PCF的传输周期由DPP控制的DPPP (distributed polling protocol period)和RTDP (real-time traffic downlink period)组成。本文进一步介绍了一种处理隐站问题的技术,并提出了相应的改进方案。当一个或多个台站误解了媒体的状态,导致无法预料的碰撞时,就会出现这个问题。通过仿真比较了改进后的PCF与标准PCF在支持语音传输时的性能。结果表明,与标准PCF相比,改进后的PCF可以支持更多的台数,显著提高了信道利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A modified point coordination function in IEEE 802.11 wireless LAN
With recent advances in wireless technologies, wireless LANs are becoming increasingly widespread as an alternative to fixed access technologies. The IEEE 802.11 standard has gained the most popularity among the different standards and is currently being deployed both within enterprises as well as being used for public access. One of the weaknesses of the basic medium access in the 802.11 standard is its relatively poor support for real-time traffic. In order to provide this support, the MAC layer implements a Point Coordination Function (PCF). However, since the PCF is based on a centralized polling protocol, some bandwidth is wasted due to the polling overheads and null packets in case the polled stations do not have any data to transmit. In order to reduce the waste and increase the channel utilization this paper presents a modified version of the standard PCF. The modified PCF uses a distributed polling protocol (DPP) as an access mechanism for the uplink transmission. The transmission period in the modified PCF consists of a distributed polling protocol period (DPPP) which is controlled by the DPP and the real-time traffic downlink period (RTDP). The paper further introduces a technique for dealing with the hidden station problem for use together with the proposed modification. This problem occurs when one or more stations misinterpret the status of the medium leading to unforeseen collisions. Using simulation we compare the performance of the modified PCF with the standard PCF when they are used to support voice transmissions. The results show that the modified PCF significantly improves the channel utilization since it can support a higher number of stations than the standard PCF.
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