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基于强化学习的应急蜂窝网络分布式无人机基站定位

Distributed Drone Base Station Positioning for Emergency Cellular Networks Using Reinforcement Learning.

作者信息

Klaine Paulo V, Nadas João P B, Souza Richard D, Imran Muhammad A

机构信息

1School of Engineering, University of Glasgow, Glasgow, UK.

2Federal University of Santa Catarina (UFSC), Florianópolis, Brazil.

出版信息

Cognit Comput. 2018;10(5):790-804. doi: 10.1007/s12559-018-9559-8. Epub 2018 May 22.

Abstract

Due to the unpredictability of natural disasters, whenever a catastrophe happens, it is vital that not only emergency rescue teams are prepared, but also that there is a functional communication network infrastructure. Hence, in order to prevent additional losses of human lives, it is crucial that network operators are able to deploy an emergency infrastructure as fast as possible. In this sense, the deployment of an intelligent, mobile, and adaptable network, through the usage of drones-unmanned aerial vehicles-is being considered as one possible alternative for emergency situations. In this paper, an intelligent solution based on reinforcement learning is proposed in order to find the best position of multiple drone small cells (DSCs) in an emergency scenario. The proposed solution's main goal is to maximize the amount of users covered by the system, while drones are limited by both backhaul and radio access network constraints. Results show that the proposed -learning solution largely outperforms all other approaches with respect to all metrics considered. Hence, intelligent DSCs are considered a good alternative in order to enable the rapid and efficient deployment of an emergency communication network.

摘要

由于自然灾害的不可预测性,每当灾难发生时,不仅应急救援团队做好准备至关重要,而且还需要有一个功能正常的通信网络基础设施。因此,为了防止更多人员伤亡,网络运营商能够尽快部署应急基础设施至关重要。从这个意义上说,通过使用无人机(无人驾驶飞行器)来部署智能、移动且适应性强的网络被视为应对紧急情况的一种可能选择。本文提出了一种基于强化学习的智能解决方案,以在紧急场景中找到多个无人机小基站(DSC)的最佳位置。所提出解决方案的主要目标是在无人机受到回程和无线接入网络限制的情况下,最大化系统覆盖的用户数量。结果表明,就所考虑的所有指标而言,所提出的强化学习解决方案在很大程度上优于所有其他方法。因此,智能DSC被认为是实现应急通信网络快速高效部署的一个不错选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e058/6182572/48daf8510bed/12559_2018_9559_Fig1_HTML.jpg

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