Adaptive contention window control scheme for dense IEEE802.11 wireless LANs

Ryohei Ito, Daiki Nobayashi, T. Ikenaga
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引用次数: 5

Abstract

As portable information devices with a wireless local area network (LAN) interfaces, such as smartphones and tablet computers, become increasingly widespread, high station density and accompanying severe area throughput degradation are becoming more commonplace. One factor related to this situation is that the initial minimum contention windows size (CWmin) value in current Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) systems is set too low for the number of accessing stations. Because small CWmin values are unsuitable for high station densities, frame collisions become more commonplace and per-station communication performance decreases. In this paper, we assume that numerous stations are connected to a single access point (AP) and propose a media access control method for high station density network. In our proposed method, the AP periodically measures channel utilization and the number of stations that are transmitting frames to the AP, and then modifies the CWmin value based on these parameters. The AP then uses a beacon signal to inform the stations accessing the network of the new CWmin value. To verify the performance of our scheme, QualNet network simulations were performed, the results of which show us that, in terms of throughput, our proposed method outperforms conventional CSMA/CA schemes in wireless LAN environments with high station densities.
密集IEEE802.11无线局域网的自适应竞争窗口控制方案
随着智能手机和平板电脑等具有无线局域网(LAN)接口的便携式信息设备的日益普及,高站点密度和随之而来的严重的区域吞吐量下降变得越来越普遍。与这种情况相关的一个因素是,当前具有避免碰撞的载波感知多址(CSMA/CA)系统的初始最小争用窗口大小(CWmin)值对于访问站的数量设置过低。由于较小的CWmin值不适合高站点密度,因此帧冲突变得更加普遍,并且每个站点的通信性能下降。本文假设多个站点连接到单个接入点(AP),并提出了一种针对高站点密度网络的媒体访问控制方法。在我们提出的方法中,AP周期性地测量信道利用率和向AP发送帧的站数,然后根据这些参数修改CWmin值。然后AP使用信标信号将新的CWmin值通知接入网络的站点。为了验证我们的方案的性能,进行了QualNet网络仿真,结果表明,就吞吐量而言,我们提出的方法优于传统的CSMA/CA方案,在无线局域网环境中具有高站点密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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