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UAV assisted public safety communications with LTE-Advanced HetNets and FeICIC

机译:无人机通过LTE-Advanced HetNets和FeICIC协助公共安全通信

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Establishing a reliable communication infrastructure at an emergency site is a crucial task for mission-critical and real-time public safety communications (PSC). To this end, use of unmanned aerial vehicles (UAVs) has recently received extensive interest for PSC to establish reliable connectivity in a heterogeneous network (HetNet) environment. These UAVs can be deployed as unmanned aerial base stations (UABSs) as part of the HetNet infrastructure. In this article, we explore the role of agile UABSs in LTE-Advanced HetNets by applying 3GPP Release-11 further-enhanced inter-cell interference coordination (Fe-ICIC) and cell range expansion (CRE) techniques. Through simulations, we compare the system-wide 5th percentile spectral efficiency (SE) when UABSs are deployed in a hexagonal grid and when their locations are optimized using a genetic algorithm, while also jointly optimizing the CRE and the FeICIC parameters. Our simulation results show that at optimized UABS locations, the 3GPP Release-11 FeICIC with reduced power subframes can provide considerably better 5th percentile SE than the 3GPP Release-10 with almost blank subframes.
机译:对于紧急任务关键和实时公共安全通信(PSC),在紧急站点建立可靠的通信基础结构是一项关键任务。为此,近来,无人驾驶飞机(UAV)的使用已引起PSC在异类网络(HetNet)环境中建立可靠连接的广泛兴趣。这些无人机可以作为HetNet基础设施的一部分部署为无人空中基站(UABS)。在本文中,我们将通过应用3GPP Release-11进一步增强的小区间干扰协调(Fe-ICIC)和小区范围扩展(CRE)技术,探索敏捷UABS在LTE-Advanced HetNet中的作用。通过仿真,我们比较了将UABS部署在六边形网格中以及使用遗传算法优化了它们的位置时,系统范围内的第5个百分点的频谱效率(SE),同时还联合优化了CRE和FeICIC参数。我们的仿真结果表明,在优化的UABS位置上,具有降低功率子帧的3GPP Release-11 FeICIC可以提供比具有几乎空白子帧的3GPP Release-10更好的5th SE。

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