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Dynamic tuning of the IEEE 802.11 protocol to achieve a theoretical throughput limit

机译:动态调整IEEE 802.11协议以达到理论上的吞吐量限制

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In wireless LANs (WLANs), the medium access control (MAC) protocol is the main element that determines the efficiency in sharing the limited communication bandwidth of the wireless channel. In this paper we focus on the efficiency of the IEEE 802.11 standard for WLANs. Specifically, we analytically derive the average size of the contention window that maximizes the throughput, hereafter theoretical throughput limit, and we show that: 1) depending on the network configuration, the standard can operate very far from the theoretical throughput limit; and 2) an appropriate tuning of the backoff algorithm can drive the IEEE 802.11 protocol close to the theoretical throughput limit. Hence we propose a distributed algorithm that enables each station to tune its backoff algorithm at run-time. The performances of the IEEE 802.11 protocol, enhanced with our algorithm, are extensively investigated by simulation. Specifically, we investigate the sensitiveness of our algorithm to some network configuration parameters (number of active stations, presence of hidden terminals). Our results indicate that the capacity of the enhanced protocol is very close to the theoretical upper bound in all the configurations analyzed.
机译:在无线局域网(WLAN)中,介质访问控制(MAC)协议是确定共享有限无线信道通信带宽效率的主要元素。在本文中,我们专注于WLAN的IEEE 802.11标准的效率。具体而言,我们通过分析得出使吞吐量最大化的竞争窗口的平均大小,此后为理论吞吐量限制,结果表明:1)根据网络配置,该标准可以在理论吞吐量限制之外运行。 2)对退避算法的适当调整可以使IEEE 802.11协议接近理论吞吐量极限。因此,我们提出了一种分布式算法,该算法可使每个站点在运行时调整其退避算法。通过仿真广泛研究了通过我们的算法增强的IEEE 802.11协议的性能。具体来说,我们调查了我们的算法对某些网络配置参数(活动站点数,隐藏终端的存在)的敏感性。我们的结果表明,在所有分析的配置中,增强协议的容量都非常接近理论上限。

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