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Dynamic Contention Window Control Scheme in IEEE 802.11e Wireless LANs

机译:IEEE 802.11e无线LAN中的动态争用窗口控制方案

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In the IEEE 802.11 MAC protocol, access points (APs) are given the same authority as wireless terminals (WTs) in terms of acquiring the wireless link, even though they aggregate several downlink flows. This feature leads to a serious throughput degradation of downlink flows, compared with uplink flows. In this paper, we propose a dynamic contention window control scheme for the IEEE 802.11e EDCA-based WLANs, in order to achieve fairness between uplink and downlink TCP flows while guaranteeing QoS requirements for real-time traffic. The proposed scheme first determines the minimum contention window size in the best-effort access category at APs, based on the number of TCP flows. It then determines the minimum and maximum contention window sizes in higher priority access categories, such as voice and video, so as to guarantee QoS requirements for these real-time traffic.
机译:在IEEE 802.11 MAC协议中,即使它们聚合了多个下行链路流,接入点(AP)将与无线终端(WTS)相同的权限作为无线终端(WTS)。与上行链路流相比,此功能导致下行链路流的严重吞吐量劣化。在本文中,我们提出了一种用于IEEE 802.11e的WLAN的动态争用窗口控制方案,以便在保证对实时流量的QoS要求之间实现上行链路和下行链路TCP流之间的公平性。所提出的方案首先根据TCP流量的数量来确定APS的最佳努力访问类别中的最小争用窗口大小。然后,它确定更高优先级接入类别的最小和最大争用窗口大小,例如语音和视频,以保证这些实时流量的QoS要求。

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