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首页> 外文期刊>Wireless Communications Letters, IEEE >Hover or Perch: Comparing Capacity of Airborne and Landed Millimeter-Wave UAV Cells
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Hover or Perch: Comparing Capacity of Airborne and Landed Millimeter-Wave UAV Cells

机译:悬停或鲈鱼:空中和降落毫米波UAV细胞的比较

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摘要

On-demand deployments of millimeter-wave (mmWave) access points (APs) carried by unmanned aerial vehicles (UAVs) are considered today as a potential solution to enhance the performance of 5G+ networks. The battery lifetime of modern UAVs, though, limits the flight times in such systems. In this letter, we evaluate a feasible deployment alternative for temporary capacity boosting in the areas with highly fluctuating user demands. The approach is to land UAV-based mmWave APs on the nearby buildings instead of hovering over the area. Within the developed mathematical framework, we compare the system-level performance of airborne and landed deployments by taking into account the full operation cycle of the employed drones. Our numerical results demonstrate that the choice of the UAV deployment option is determined by an interplay of the separation distance between the service area and the UAV charging station, drone battery lifetime, and the number of aerial APs in use. The presented methodology and results can support efficient on-demand deployments of UAV-based mmWave APs in prospective 5G+ networks.
机译:由无人驾驶飞行器(UAV)承载的毫米波(MMWAVE)接入点(APS)的按需部署被认为是提高5G +网络性能的潜在解决方案。但是,现代无人机的电池寿命限制了这种系统中的飞行时间。在这封信中,我们评估了一个可行的部署替代方案,以便在具有高度波动的用户需求中提升区域的临时容量。该方法是在附近的建筑物上落地基于无人机的MMWave AP,而不是在该区域上徘徊。在发达的数学框架内,我们通过考虑所采用的无人机的完整操作周期,比较空中和降落部署的系统级性能。我们的数值结果表明,UAV部署选项的选择由服务区域和UAV充电站之间的分离距离,无人机电池寿命和使用中的空中AP的数量相互作用来确定。呈现的方法和结果可以在潜在5G +网络中支持基于UV的MMWAVE AP的有效的按需部署。

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