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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Runtime optimization of IEEE 802.11 wireless LANs performance
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Runtime optimization of IEEE 802.11 wireless LANs performance

机译:IEEE 802.11无线局域网性能的运行时优化

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摘要

IEEE 802.11 is the standard for wireless local area networks (WLANs) promoted by the Institute of Electrical and Electronics Engineers. Wireless technologies in the LAN environment are becoming increasingly important and the IEEE 802.11 is the most mature technology to date. Previous works have pointed out that the standard protocol can be very inefficient and that an appropriate tuning of its congestion control mechanism (i.e., the backoff algorithm) can drive the IEEE 802.11 protocol close to its optimal behavior. To perform this tuning, a station must have exact knowledge of the network contention level; unfortunately, in a real case, a station cannot have exact knowledge of the network contention level (i.e., number of active stations and length of the message transmitted on the channel), but it, at most, can estimate it. We present and evaluate a distributed mechanism for contention control in IEEE 802.11 wireless LANs. Our mechanism, named asymptotically optimal backoff (AOB), dynamically adapts the backoff window size to the current network contention level and guarantees that an IEEE 802.11 WLAN asymptotically achieves its optimal channel utilization. The AOB mechanism measures the network contention level by using two simple estimates: the slot utilization and the average size of transmitted frames. These estimates are simple and can be obtained by exploiting information that is already available in the standard protocol. AOB can be used to extend the standard 802.11 access mechanism without requiring any additional hardware. The performance of the IEEE 802.11 protocol, with and without the AOB mechanism, is investigated through simulation. Simulation results indicate that our mechanism is very effective, robust, and has traffic differentiation potentialities.
机译:IEEE 802.11是由电气电子工程师协会推广的无线局域网(WLAN)标准。 LAN环境中的无线技术变得越来越重要,而IEEE 802.11是迄今为止最成熟的技术。先前的工作已经指出,标准协议可能效率很低,并且对其拥塞控制机制(即退避算法)的适当调整可以使IEEE 802.11协议接近其最佳性能。要执行此调整,站点必须完全了解网络争用级别。不幸的是,在实际情况下,站点无法确切了解网络争用级别(即,活动站点的数量和在信道上传输的消息的长度),但是最多只能估算出它。我们提出并评估一种用于IEEE 802.11无线局域网中竞争控制的分布式机制。我们的机制被称为渐进最优退避(AOB),可以使退避窗口大小动态地适应当前的网络竞争级别,并保证IEEE 802.11 WLAN渐近实现其最佳信道利用率。 AOB机制通过使用两个简单的估计来衡量网络争用级别:时隙利用率和传输帧的平均大小。这些估计很简单,可以通过利用标准协议中已经可用的信息来获得。 AOB可用于扩展标准802.11访问机制,而无需任何其他硬件。通过仿真研究了有无AOB机制的IEEE 802.11协议的性能。仿真结果表明,我们的机制非常有效,鲁棒,并且具有流量区分的潜力。

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