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Achieving Weighted Fairness and Efficient Channel Utilization in IEEE 802.11e WLANs

机译:在IEEE 802.11e WLAN中实现加权公平性和有效的信道利用

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This paper addresses the problem of maximizing the protocol capacity of 802.1 le networks, under the assumption that each access category (AC) has the same packet length. We prove that the maximal protocol capacity can be achieved at an optimal operating point with the medium idle probability of e~(2/T_c~*)~(1/2), where T_C~* is the duration of collision time in terms of slot unit. Our results indicate that the optimal operating point is independent of the number of stations and throughput ratio among ACs, which means the proposed analytical results still hold even when throughput ratio and station number are time-varying. Further, we show that the maximal protocol capacity can be achieved in saturated cases by properly choosing the protocol parameters. We present a parameter configuration algorithm to achieve both efficient channel utilization and proportional fairness in IEEE 802.11e EDCA networks. Extensive simulation and analytical results are presented to verify the proposed ideas.
机译:本文假设每个访问类别(AC)具有相同的数据包长度,从而解决了最大化802.1le网络协议容量的问题。我们证明最大的协议容量可以在最佳操作点以e〜(2 / T_c〜*)〜(1/2)的中等空闲概率实现,其中T_C〜*是冲突时间的持续时间,表示为插槽单元。我们的结果表明,最佳工作点与AC之间的站点数和吞吐率无关,这意味着即使吞吐率和站点数随时间变化,所提出的分析结果仍然成立。此外,我们表明,通过适当选择协议参数,可以在饱和情况下实现最大协议容量。我们提出了一种参数配置算法,以在IEEE 802.11e EDCA网络中实现有效的信道利用率和比例公平性。提出了广泛的仿真和分析结果,以验证所提出的想法。

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