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Using multiple metrics for rate adaptation algorithms in IEEE 802.11 WLANs

机译:在IEEE 802.11 WLAN中使用多个指标进行速率自适应算法

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摘要

IEEE 802.11 Wireless LANs (WLANs) use rate adaptation algorithms (RAAs) to dynamically switch data rates to accommodate the fluctuating wireless channel conditions. Classic RAAs such as ARF and ONOE suffer from rate poisoning and nability to distinguish between collision and packet losses caused by channel errors. Existing approaches in the literature are able to solve only one of the above two issues. In this paper we propose a novel rate adaptation protocol to address both issues for multi-rate wireless networks. The novelty of our approach is to combine the metrics of expected packet transmission time (ETT) and the average number of frozen slots (ANFS) to estimate the quality and level of contention for the current channel. A mathematical model to calculate ETT and ANFS on the fly is presented. Our protocol is simple and practical, which takes into consideration not only link quality and frame loss characteristics, but also impact of collisions during the design. Simulation results show that without the perfect knowledge of current channel condition and any signal strength information, our algorithm can achieve significant performance improvement in terms of end-toend throughput for different network conditions compared with state-of-the-art link adaptation algorithms.
机译:IEEE 802.11无线LAN(WLAN)使用速率自适应算法(RAA)动态切换数据速率,以适应不断变化的无线信道条件。诸如ARF和ONOE之类的经典RAA遭受速率中毒,无法区分由信道错误引起的冲突和丢包。文献中的现有方法只能解决上述两个问题之一。在本文中,我们提出了一种新颖的速率自适应协议来解决多速率无线网络的两个问题。我们方法的新颖之处在于将预期数据包传输时间(ETT)和冻结时隙的平均数量(ANFS)的指标结合起来,以估算当前信道的质量和竞争水平。提出了一种用于动态计算ETT和ANFS的数学模型。我们的协议既简单又实用,它不仅考虑了链路质量和帧丢失特性,还考虑了设计过程中冲突的影响。仿真结果表明,与最新的链路自适应算法相比,在不了解当前信道状况和任何信号强度信息的情况下,我们的算法可以在不同网络条件下的端到端吞吐量方面实现显着的性能提升。

著录项

  • 作者

    Li, L; Fan, Zhong; Kaleshi, D;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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