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E-Fi: Evasive Wi-Fi Measures for Surviving LTE within 5 GHz Unlicensed Band

机译:E-Fi:避免LTE在5 GHz非许可频段内生存的有效Wi-Fi措施

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The growing spectrum crunch has motivated exploratory efforts in the use of LTE in the 5 GHz bands for downlink traffic. However, this paradigm raises concerns of fair sharing of the spectrum and the adverse impact of scheduled LTE frames on Wi-Fi Packet Success Rates (PSR). To address this issue, we propose E-Fi, an interference-evasion mechanism that allows Wi-Fi devices to survive LTE transmissions without any cooperation between these two different standards. Different from existing approaches, we argue that the simple use of Almost Blank Subframes (ABS) within the LTE standard offering short channel access windows overestimates opportunities for Wi-Fi. The pilots embedded in the ABS not only interfere with Wi-Fi but also adversely impact the carrier sensing function. E-Fi mitigates this problem through a two-fold approach. It uses a combination of (i) Wi-Fi Direct with packet relaying and (ii) classical distributed coordination function to reach distant nodes. Second, it ensures load balancing for both Wi-Fi uplink and downlink traffic with high PSR by creating node-groups based with dedicated contention-based medium access intervals. Our approach is validated by comprehensive simulation and experimental results that indicate significantly higher throughput in E-Fi compared to classical Wi-Fi.
机译:日益增长的频谱紧缩促使人们在5 GHz频段的LTE中使用LTE进行下行业务。然而,这种范例引起了对频谱的公平共享以及调度的LTE帧对Wi-Fi分组成功率(PSR)的不利影响的担忧。为解决此问题,我们提出了一种E-Fi,一种避免干扰的机制,可使Wi-Fi设备在LTE传输中生存下来,而无需这两个不同标准之间的任何合作。与现有方法不同,我们认为LTE标准中提供短信道访问窗口的Almost Blank Subframes(ABS)的简单使用高估了Wi-Fi的机会。嵌入在ABS中的导频不仅会干扰Wi-Fi,还会对载波侦听功能产生不利影响。 E-Fi通过两种方法缓解了此问题。它结合了(i)具有数据包中继功能的Wi-Fi Direct和(ii)经典的分布式协调功能,可以到达遥远的节点。其次,它通过创建基于专用基于争用的媒体访问间隔的节点组,确保具有高PSR的Wi-Fi上行链路和下行链路流量的负载平衡。我们的方法已通过全面的仿真和实验结果验证,表明与传统Wi-Fi相比,E-Fi的吞吐量显着提高。

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