UAV assisted heterogeneous networks for public safety communications

Arvind Merwaday, Ismail Güvenç
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引用次数: 378

Abstract

Communications play an important role during public safety operations. Since the current communication technologies heavily rely on the backbone network, the failure of base stations (BSs) due to natural disasters or malevolent attacks causes communication difficulties for public safety and emergency communications. Recently, the use of unmanned aerial vehicles (UAVs) such as quadcopters and unmanned gliders have gained attention in public safety communications. They can be used as unmanned aerial base stations (UABSs), which can be deployed rapidly as a part of the heterogeneous network architecture. However, due to their mobile characteristics, interference management in the network becomes very challenging. In this paper, we explore the use of UABSs for public safety communications during natural disasters, where part of the communication infrastructure becomes damaged and dysfunctional (e.g., as in the aftermath of the 2011 earthquake and tsunami in Japan). Through simulations, we analyze the throughput gains that can be obtained by exploiting the mobility feature of the UAVs. Our simulation results show that when there is loss of network infrastructure, the deployment of UABSs at optimized locations can improve the throughput coverage and the 5th percentile spectral efficiency of the network. Furthermore, the improvement is observed to be more significant with higher path-loss exponents.
无人机辅助异构网络用于公共安全通信
通信在公共安全行动中发挥着重要作用。目前的通信技术严重依赖骨干网,由于自然灾害或恶意攻击导致基站故障,会给公共安全和应急通信带来通信困难。最近,无人驾驶飞行器(uav)的使用,如四轴飞行器和无人滑翔机,在公共安全通信中受到关注。它们可以用作无人机基站(uabs),可以作为异构网络体系结构的一部分快速部署。然而,由于其移动特性,网络中的干扰管理变得非常具有挑战性。在本文中,我们探讨了在自然灾害期间使用uabs进行公共安全通信,其中部分通信基础设施遭到破坏和功能失调(例如,在2011年日本地震和海啸之后)。通过仿真,分析了利用无人机机动性特性所能获得的吞吐量增益。仿真结果表明,在网络基础设施丢失的情况下,在优化位置部署uabs可以提高网络的吞吐量覆盖率和第5百分位频谱效率。此外,路径损耗指数越高,改进效果越显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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