IEEE 802.11be networks (aka Wi-Fi 7) will have to cope with new bandwidth-hungry and low-latency services such as eXtended Reality and multi-party cloud gaming. With this goal in mind, transmit opportunity (TXOP) sharing between coordinated access points (APs) may contribute to alleviating inter-AP contention, hence increasing the overall network throughput. This paper evaluates two coordinated TXOP sharing strategies: coordinated time division multiple access (c-TDMA) and coordinated-TDMA with spatial reuse (c-TDMA/SR). We show that, while c-TDMA alone does not result in any significant improvement in terms of the WLAN throughput, it lays the groundwork to implement coordinated SR (c-SR) techniques. To evaluate the performance of c-TDMA/SR, we propose a fair scheduler able to select the best subset of parallel transmissions in WLAN deployments, as well as the appropriate power levels to be used by APs and stations (STAs), leading to maximum performance. The results obtained for c-TDMA/SR show significant throughput gains compared with c-TDMA, with values higher than 140% in 90% of the considered scenarios.
翻译:IEE 802.11be 网络 (aa Wi-Fi 7) 将不得不应对新的带宽饥饿和低纬度服务,如exended Reality和多党云彩赌博。考虑到这一目标,传送协调接入点之间的共享机会(TXOP)可能有助于缓解亚太之间的争议,从而增加整个网络输送量。本文件评估了两个协调的TXOP共享战略:协调的时间分配多重接入(c-TDMA)和与空间再利用(c-TDMA/SR)相协调的TDMA。我们表明,尽管单凭CDMA本身在WLAN吞吐量方面没有取得任何重大改进,但它为采用协调的SR(c-SR)技术奠定了基础。为了评估c-TDMA/SR的绩效,我们建议一个公平的调度程序,能够选择WLAN部署中的最佳的平行传输子集,以及亚太和站将使用的适当功率水平,从而达到最大性能。我们发现,CTDMA/SR所取得的结果表明,与cMA设想的140%相比,其价值比140高。