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A Novel Approach to Contention Control in IEEE 802.11e-Operated WLANs

机译:IEEE 802.11e运行的WLAN中的争用控制方法

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摘要

In this paper, we devise, in compliance with the IEEE 802.11e protocol [1], a novel MAC-centric approach, called MAC contention control (MCC), to maximizing the bandwidth utilization and achieving proportional bandwidth allocation. We first show that approaches based on estimating the number of competing nodes and then setting the contention window size may not converge (and in some cases diverge) because of network dynamics. Then, by studying the optimality condition derived in our prior work [10], we identify two parameters (referred to as control references) that remain approximately constant when the network operates at the optimal operational point, regardless of the number of competing nodes in each AC. We instrument MCC to measure these control references, compare measurement results to their optimal control reference levels, and adjust the packet dequeuing rate from the interface queues in an additive-increase-multiplicative-decrease (AIMD) fashion and with respect to pre-specified bandwidth allocation ratio associated with its AC. In some sense, MCC controls the rate of passing packets from the interface queues to the MAC access function, and thus practically controls the effective number of competing nodes.We have conducted an extensive simulation study, and demonstrated the superiority of MCC to 802.11e in terms of both the achievable network throughput and the capability of achieving proportional bandwidth allocation. This, coupled with the fact that MCC does not require change in firmware and can be practically deployed, makes MCC a viable approach to contention control in IEEE 802.11e-operated WLANs.
机译:在本文中,我们根据IEEE 802.11e协议[1]设计一种新颖的以MAC为中心的方法,称为MAC竞争控制(MCC),以最大程度地提高带宽利用率并实现按比例分配带宽。我们首先显示,由于网络动态性,基于估计竞争节点数然后设置竞争窗口大小的方法可能不会收敛(在某些情况下会有所不同)。然后,通过研究在先前工作中得出的最优条件[10],我们确定了两个参数(称为控制参考),这些参数在网络以最佳操作点运行时几乎保持恒定,而与每个竞争节点的数量无关AC。我们对MCC进行仪器测量,以测量这些控制参考,将测量结果与其最佳控制参考水平进行比较,并以加减乘减(AIMD)方式以及针对预先指定的带宽来调整接口队列中的数据包出队率与AC相关的分配比率。从某种意义上说,MCC控制着数据包从接口队列传递到MAC访问功能的速率,从而实际上控制了竞争节点的有效数量。我们进行了广泛的仿真研究,并证明了MCC在802.11e上的优越性。既可以实现的网络吞吐量,又可以实现按比例分配带宽的能力。这加上MCC无需更改固件即可实际部署的事实,使MCC成为在IEEE 802.11e操作的WLAN中争用控制的可行方法。

著录项

  • 作者

    C. Hu; J. C. Hou;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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