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机译:全纳米

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We target the problem of providing 5G network connectivity in rural zones by means of Base Stations (BSs) carried by Unmanned Aerial Vehicles (UAVs). Our goal is to schedule the UAVs missions to: i) limit the amount of energy consumed by each UAV, ii) ensure the coverage of selected zones over the territory, ii) decide where and when each UAV has to be recharged in a ground site, iii) deal with the amount of energy provided by Solar Panels (SPs) and batteries installed in each ground site. We then formulate the RURALPLAN optimization problem, a variant of the unsplittable multicommodity flow problem defined on a multiperiod graph. After detailing the objective function and the constraints, we solve RURALPLAN in a realistic scenario. Results show that RURALPLAN is able to outperform a solution ensuring coverage but not considering the energy management of the UAVs.
机译:我们通过无人驾驶航空车辆(UAV)携带的基站(BSS)来瞄准农村区内提供5G网络连接的问题。我们的目标是安排无人机的任务:i)限制每个UAV,II)消耗的能源量,确保在该地区的选定区覆盖,ii)决定在地面中每个无人机在地面上充电,iii)处理每个接地站点的太阳能电池板(SPS)和电池提供的能量。然后,我们制定了农冢优化问题,是在多体图中定义的不可升定的多商品流量问题的变体。在详细说明目标函数和限制之后,我们在现实的情景中解决农村。结果表明,农村能够越优于解决覆盖的解决方案,而不是考虑到无人机的能源管理。

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