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Energy-efficient Trajectory Planning and Speed Scheduling for UAV-assisted Data Collection

机译:无人机辅助数据收集的节能轨迹规划和速度调度

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Unmanned aerial vehicle (UAV) assisted data collection is a promising technology, where a base station (BS) is mounted on a UAV to collect data from ground sensors (GSs). However, it is very challenging to save the energy of UAV while completing the tasks of data collection. In this work, a novel energy consumption model of UAV is adopted, where the UAV flies at a proper speed is the most energy efficient, i.e., the UAV will cost more energy when it flies faster or slower. According to this model, we investigate the Energy-efficient Trajectory Planning and Speed Scheduling (ETPSS) problem, aiming at minimizing the total energy consumption of UAV by determining flight trajectory and speed of UAV while completing the task of data collection for each GS. To solve this problem, we decompose it into two sub-problems, i.e., trajectory design and speed scheduling, and propose a three-step scheme named Energy-efficient Trajectory and Speed optimization (ETSO). Moreover, the second step of ETSO optimally solves the speed scheduling sub-problem. Finally, we conduct simulation experiments, and the results demonstrate that the ETSO performs well on energy efficiency.
机译:无人驾驶飞行器(UAV)辅助数据收集是一个有前途的技术,其中基站(BS)安装在UAV上,以从地面传感器(GSS)收集数据。但是,在完成数据收集任务时节省UAV的能量是非常具有挑战性的。在这项工作中,采用了一种新的无人机能耗模型,其中UAV以适当的速度飞行是最能效率的,即,当它在它速度更快或较慢时,无人机将花费更多的能量。根据该模型,我们调查节能轨迹规划和速度调度(ETPSS)问题,旨在通过确定为每个GS的数据收集任务确定UAV的飞行轨迹和速度来最小化UAV的总能耗。为了解决这个问题,我们将其分解为两个子问题,即轨迹设计和速度调度,并提出了一种名为节能轨迹和速度优化(ETSO)的三步方案。此外,ETSO的第二步骤最佳地解决了速度调度子问题。最后,我们进行仿真实验,结果表明ETSO对能效进行良好。

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