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Statistical multiplexing, admission region, and contention window optimization in multiclass wireless LANs

机译:多类无线局域网中的统计复用,准入区域和竞争窗口优化

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This paper presents an analytical model for evaluating the statistical multiplexing effect, admission region, and contention window design in multiclass wireless LANs (WLANs). We consider a distributed medium access control (MAC) which provisions service differentiation via contention window differentiation, where mobile nodes belonging to different service classes have different quality of service (QoS) requirements. With bursty input traffic, we show that the WLAN admission region under the QoS constraint can be significantly improved by exploiting the statistical multiplexing gain. Moreover, the statistical multiplexing gain can be further improved by aggregating the downlink flows at the access point (AP). We also demonstrate that the selection of contention windows plays an important role in improving the WLAN's QoS capability, while the optimal contention window for each class and the maximum admission region can be jointly solved from our analytical model. The analysis accuracy and the resource utilization improvement are demonstrated by extensive numerical results.
机译:本文提出了一种用于评估多类无线局域网(WLAN)中的统计复用效果,准入区域和竞争窗口设计的分析模型。我们考虑一种分布式媒体访问控制(MAC),它通过竞争窗口区分来提供服务区分,其中属于不同服务类别的移动节点具有不同的服务质量(QoS)要求。对于突发输入流量,我们表明,通过利用统计复用增益,可以显着改善QoS约束下的WLAN接纳区域。而且,通过在接入点(AP)处聚合下行链路流,可以进一步提高统计复用增益。我们还证明,争用窗口的选择在提高WLAN的QoS能力方面起着重要作用,而每种类别的最佳争用窗口和最大允许区域可以通过我们的分析模型共同解决。大量的数值结果证明了分析的准确性和资源利用率的提高。

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