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WiFi and LTE Coexistence in the Unlicensed Spectrum

机译:非授权频谱中的WiFi和LTE共存

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摘要

Today, smart-phones have revolutionized wireless communication industry towards an era of mobile data. To cater for the ever increasing data traffic demand, it is of utmost importance to have more spectrum resources whereby sharing under-utilized spectrum bands is an effective solution. In particular, the 4G broadband Long Term Evolution (LTE) technology and its foreseen 5G successor will benefit immensely if their operation can be extended to the under-utilized unlicensed spectrum. In this thesis, first we analyze WiFi 802.11n and LTE coexistence performance in the unlicensed spectrum considering multi-layer cell layouts through system level simulations. We consider a time division duplexing (TDD)-LTE system with an FTP traffic model for performance evaluation. Simulation results show that WiFi performance is more vulnerable to LTE interference, while LTE performance is degraded only slightly. Based on the initial findings, we propose a Q-Learning based dynamic duty cycle selection technique for configuring LTE transmission gaps, so that a satisfactory throughput is maintained both for LTE and WiFi systems. Simulation results show that the proposed approach can enhance the overall capacity performance by 19% and WiFi capacity performance by 77%, hence enabling effective coexistence of LTE and WiFi systems in the unlicensed band.
机译:如今,智能电话已经向无线通信行业带来了革命,向着移动数据时代迈进了一步。为了满足不断增长的数据流量需求,拥有更多频谱资源至关重要,因此共享未充分利用的频谱频段是一种有效的解决方案。尤其是,如果4G宽带长期演进(LTE)技术及其可预见的5G继承者的操作可以扩展到未充分利用的未许可频谱,则将受益匪浅。在本文中,首先我们通过系统级仿真,在考虑了多层小区布局的情况下,分析了免许可频谱中的WiFi 802.11n和LTE共存性能。我们考虑使用时分双工(TDD)-LTE系统和FTP流量模型进行性能评估。仿真结果表明,WiFi性能更容易受到LTE干扰,而LTE性能仅稍有下降。基于最初的发现,我们提出了一种基于Q学习的动态占空比选择技术,用于配置LTE传输间隙,从而为LTE和WiFi系统都保持了令人满意的吞吐量。仿真结果表明,该方法可以将整体容量性能提高19%,将WiFi容量性能提高77%,从而可以在非授权频段有效地共存LTE和WiFi系统。

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    Rupasinghe Nadisanka;

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  • 年度 2015
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