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Modeling and Analyzing the Coexistence of Wi-Fi and LTE in Unlicensed Spectrum

机译:在非授权频谱中对Wi-Fi和LTE共存进行建模和分析

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摘要

We leverage stochastic geometry to characterize key performance metrics for neighboring Wi-Fi and LTE networks in unlicensed spectrum. Our analysis focuses on a single unlicensed frequency band, where the locations for the Wi-Fi access points and LTE eNodeBs are modeled as two independent homogeneous Poisson point processes. Three LTE coexistence mechanisms are investigated: 1) LTE with continuous transmission and no protocol modifications; 2) LTE with discontinuous transmission; and 3) LTE with listen-before-talk and random back-off. For each scenario, we derive the medium access probability, the signal-to-interference-plus-noise ratio coverage probability, the density of successful transmissions (DST), and the rate coverage probability for both Wi-Fi and LTE. Compared with the baseline scenario where one Wi-Fi network coexists with an additional Wi-Fi network, our results show that Wi-Fi performance is severely degraded when LTE transmits continuously. However, LTE is able to improve the DST and rate coverage probability of Wi-Fi while maintaining acceptable data rate performance when it adopts one or more of the following coexistence features: a shorter transmission duty cycle, lower channel access priority, or more sensitive clear channel assessment thresholds.
机译:我们利用随机几何结构来表征非授权频谱中相邻Wi-Fi和LTE网络的关键性能指标。我们的分析着眼于单个非授权频段,其中Wi-Fi接入点和LTE eNodeB的位置被建模为两个独立的同质Poisson点过程。研究了三种LTE共存机制:1)具有连续传输且无协议修改的LTE; 2)LTE传输不连续;和3)LTE,具有先听后听和随机退避功能。对于每种情况,我们得出Wi-Fi和LTE的媒体访问概率,信号干扰加噪声比覆盖概率,成功传输的密度(DST)以及速率覆盖概率。与一个Wi-Fi网络与另一个Wi-Fi网络共存的基准方案相比,我们的结果表明,当LTE连续传输时,Wi-Fi性能会严重降低。但是,当采用以下一种或多种共存功能时,LTE能够提高Wi-Fi的DST和速率覆盖概率,同时保持可接受的数据速率性能:较短的传输占空比,较低的信道访问优先级或更敏感的清除渠道评估阈值。

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