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Modeling link adaptation algorithm for IEEE 802.11 wireless LAN networks

机译:IEEE 802.11无线局域网网络的建模链路自适应算法

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摘要

Link adaptation is a critical component of IEEE 802.11 systems. In this paper, we analytically model a retransmission based Auto Rate Fallback (ARF) link adaptation algorithm. Both packet collisions and packet corruptions are modeled with the algorithm. The models can provide insights into the dynamics of the link adaptation algorithms and configuration of algorithms parameters. It is also observed that when the competing number of stations is high, packet collisions can largely affected the performance of ARF and make ARF operate with the lowest date rate, even when no packet corruption occur. This is in contrast to the existing assumption that packet collision will not affect the correct operation of ARF and can be ignored in the evaluation of ARF. The work presented in this paper can provide guidelines on configuring the link adaptation algorithms and designing new link adaptation algorithms for future high speed 802.11 systems.
机译:链路自适应是IEEE 802.11系统的关键组成部分。在本文中,我们分析性地模型化了基于重传的自动速率回退(ARF)链路自适应算法。数据包冲突和数据包损坏都使用该算法建模。这些模型可以提供有关链路自适应算法的动态性和算法参数配置的见解。还可以观察到,当竞争的站点数很高时,即使没有发生数据包损坏,数据包冲突也会极大地影响ARF的性能,并使ARF以最低的数据速率运行。这与现有的假设相反,现有的假设是数据包冲突将不会影响ARF的正确操作,并且可以在ARF评估中忽略。本文介绍的工作可以为配置链路自适应算法和为未来的高速802.11系统设计新的链路自适应算法提供指导。

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