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A Control Theoretic Approach for Throughput Optimization in IEEE 802.11e EDCA WLANs

机译:IEEE 802.11e EDCA WLAN中的吞吐量优化的控制理论方法

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摘要

The MAC layer of the 802.11 standard, based on the CSMA/CA mechanism, specifies a set of parameters to control the aggressiveness of stations when trying to access the channel. However, these parameters are statically set independently of the conditions of the WLAN (e.g. the number of contending stations), leading to poor performance for most scenarios. To overcome this limitation previous work proposes to adapt the value of one of those parameters, namely the CW, based on an estimation of the conditions of the WLAN. However, these approaches suffer from two major drawbacks: i) they require extending the capabilities of standard devices or ii) are based on heuristics. In this paper we propose a control theoretic approach to adapt the CW to the conditions of the WLAN, based on an analytical model of its operation, that is fully compliant with the 802.11e standard. We use a Proportional Integrator controller in order to drive the WLAN to its optimal point of operation and perform a theoretic analysis to determine its configuration. We show by means of an exhaustive performance evaluation that our algorithm maximizes the total throughput of the WLAN and substantially outperforms previous standard-compliant proposals.
机译:802.11标准的MAC层基于CSMA / CA机制,指定一组参数来控制尝试访问信道时站点的攻击性。但是,这些参数是静态设置的,与WLAN的条件(例如,竞争站点的数量)无关,从而导致大多数情况下性能不佳。为了克服该限制,先前的工作提出基于对WLAN的条件的估计来适配那些参数之一的值,即CW。但是,这些方法有两个主要缺点:i)它们需要扩展标准设备的功能,或者ii)基于启发式方法。在本文中,我们基于完全符合802.11e标准的运行分析模型,提出了一种控制理论方法来使CW适应WLAN的条件。我们使用一个比例积分器控制器来将WLAN驱动到其最佳操作点,并进行理论分析以确定其配置。我们通过详尽的性能评估表明,我们的算法可以最大程度地提高WLAN的总吞吐量,并且大大优于以前的符合标准的提议。

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