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Interference Coordination for Aerial and Terrestrial Nodes in Three-Tier LTE-Advanced HetNet

机译:三层LTE-Advanced HetNet中空中和地面节点的干扰协调

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Integrating unmanned aerial vehicles (UAVs) as user equipment (UE) and base-stations (BSs) into an existing LTE-Advanced heterogeneous network (HetNet) can further enhance wireless connectivity and support emerging services. However, this would require effective configuration of system-level design parameters for interference management. This paper provides system-level insights into a three-tier LTE-Advanced air/ground HetNet, wherein the UAVs are deployed both as BSs and UEs, and co-exist with existing terrestrial nodes. Moreover, this HetNet leverages on cell range expansion (CRE), intercell interference coordination (ICIC), 3D beamforming, and enhanced support for UAVs. Through Monte-Carlo simulations, we compare system-wide fifth percentile spectral efficiency (5pSE) and coverage probability for different ICIC techniques, while jointly optimizing the ICIC and CRE parameters. Our results show that reduced power subframes defined in 3GPP Rel-11 can provide considerably better 5pSE and coverage probability than the 3GPP Re1-10 with almost blank subframes.
机译:将无人驾驶飞行器(UVS)作为用户设备(UE)和基站(BSS)集成到现有LTE-Advance异构网络(HetNet)中,可以进一步增强无线连接和支持新服务。但是,这将需要有效地配置系统级设计参数进行干扰管理。本文为三层LTE-Advanced空中/地HetNet提供了系统级洞察力,其中UVS都作为BSS和UE部署,并与现有的地面节点共存。此外,这种HetNet利用单元格范围扩展(CRE),Intercell干扰协调(ICIC),3D波束成形和增强的UAV支持。通过Monte-Carlo仿真,我们比较系统宽的第五百分位谱效率(5PSE)和不同ICIC技术的覆盖概率,同时共同优化ICIC和CRE参数。我们的结果表明,在3GPP Rel-11中定义的减小的功率子帧可以提供比具有几乎空白子帧的3GPP RE1-10更好的5PSE和覆盖概率。

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