论文标题
最佳的束缚无人机部署,以最大程度地覆盖用户群集
Optimal Deployment of Tethered Drones for Maximum Cellular Coverage in User Clusters
论文作者
论文摘要
无人驾驶飞机(UAV)辅助蜂窝通信最近引起了重大兴趣。尽管它比陆地沟通具有多个优势,但无人机的沟通却遭受了两个主要缺点。典型的不受欢迎的无人机(UUAV)的电池电源有限,因此飞行时间有限,并且需要额外的无线回程链接才能将用户连接到核心网络。在本文中,我们提出了束缚的无人机(TUAV)的利用来协助蜂窝网络,该网络在该网络中提供了电源,并通过高容量链接将TUAV连接到核心网络。然而,由于绳索长度有限,TUAV的移动性有限。提供了基于随机几何的分析,用于覆盖无人机辅助的蜂窝网络,其中移动用户位于圆形热点中。对于该设置,我们分析和比较了两种情况:(i)使用UUAV和(ii)使用Tuav,以卸载陆地基站(TBS)。我们在分析中捕获了UUAV和TUAV的上述局限性。给定TBS和无人机位置提供了新的用户协会分析。接下来,我们研究UUAV和TUAV的最佳位置,以最大程度地提高覆盖率。揭示了多个有用的见解。例如,数值结果表明,由于uuav由于电池限制而可在80%的时间内可用时,绳索长度高于75 m时,tuavs的表现优于uuavs。
Unmanned aerial vehicle (UAV) assisted cellular communication is gaining significant interest recently. Although it offers several advantages over terrestrial communication, UAV communication suffers from two main shortcomings. The typical untethered UAV (uUAV) has a limited battery power supply and therefore limited flying time, and it needs an extra wireless backhaul link to connect users to the core network. In this paper, we propose the utilization of the tethered UAV (tUAV) to assist the cellular network, where the tether provides power supply and connects the tUAV to the core network through high capacity link. The tUAV however has a limited mobility due to the limited tether length. A stochastic geometry-based analysis is provided for the coverage probability of an UAV-assisted cellular network where the mobile users located within a circular hot-spot. For that setup, we analyze and compare two scenarios: (i) utilizing uUAV and (ii) utilizing tUAV, for offloading the terrestrial base station (TBS). We capture the aforementioned limitations of each of the uUAV and the tUAV in our analysis. A novel user association analysis is provided given the TBS and the UAV locations. Next, we study the optimal locations of the uUAV and the tUAV to maximize the coverage probability. Multiple useful insights are revealed. For instance, numerical results show that tUAVs outperform uUAVs when the tether length is above 75 m, given that the uUAV is available for 80% of the time due to its battery limitations.