论文标题

使用能源效率3D轨迹计划在蜂窝网络中管理飞行基站的集合

Managing Sets of Flying Base Stations Using Energy Efficient 3D Trajectory Planning in Cellular Networks

论文作者

Sobouti, Mohammad Javad, Mohajerzadeh, Amir Hossein, Seno, Seyed Amin Hosseini, Yanikomeroglu, Halim

论文摘要

蜂窝网络中无人驾驶汽车(UAV)引起了极大的兴趣。他们的应用之一是飞行基站(FBSS),可以增加覆盖范围和服务质量(QoS)。由于FBS是由电池供电的,因此调节其能源使用是其使用的重要方面。因此,FBS在整个操作中的适当放置和轨迹对于克服这一挑战至关重要。在本文中,我们提出了一种解决多FBS 3D轨迹问题的方法,该方法考虑了FBS能量消耗,操作时间,飞行距离限制和间隙间干扰约束。我们的方法分为两个阶段:FBS放置和FBS轨迹。在采用这种方法时,我们将问题分为几个快照。首先,我们在每个快照中找到所需的最小FBS数量及其适当的3D位置。然后,在每两个快照之间,执行轨迹阶段。每个FBS的原点和目的地之间的最佳路径是在轨迹阶段确定的,它使用建议的二进制线性问题(BLP)模型,该模型考虑了FBS能量消耗和飞行距离约束。然后,在考虑障碍物和避免碰撞的同时确定每个FB的最短路径。快照之间可能需要的FBS数量有所不同,因此我们提出了一种FBS集管理(FSM)技术来管理FBSS及其功能。结果表明,所提出的方法适用于现实情况,结果与期望一致。

Unmanned aerial vehicles (UAVs) in cellular networks have garnered considerable interest. One of their applications is as flying base stations (FBSs), which can increase coverage and quality of service (QoS). Because FBSs are battery-powered, regulating their energy usage is a vital aspect of their use; and therefore the appropriate placement and trajectories of FBSs throughout their operation are critical to overcoming this challenge. In this paper, we propose a method of solving a multi-FBS 3D trajectory problem that considers FBS energy consumption, operation time, flight distance limits, and inter-cell interference constraints. Our method is divided into two phases: FBS placement and FBS trajectory. In taking this approach, we break the problem into several snapshots. First, we find the minimum number of FBSs required and their proper 3D positions in each snapshot. Then, between every two snapshots, the trajectory phase is executed. The optimal path between the origin and destination of each FBS is determined during the trajectory phase by utilizing a proposed binary linear problem (BLP) model that considers FBS energy consumption and flight distance constraints. Then, the shortest path for each FBS is determined while taking obstacles and collision avoidance into consideration. The number of FBSs needed may vary between snapshots, so we present an FBS set management (FSM) technique to manage the set of FBSs and their power. The results demonstrate that the proposed approach is applicable to real-world situations and that the outcomes are consistent with expectations.

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