典型文献
Energy-efficiency maximization for fixed-wing UAV-enabled relay network with circular trajectory
文献摘要:
With the development of Unmanned Aerial Vehicles(UAVs),the applications of UAVs have been extensively explored.In the field of wireless communications,the relay nodes are often used to extend network coverage.However,traditional fixed ground relays cannot be flexibly deployed due to their low heights and fixed locations.Hence,deploying UAV as relay node is a promising solution and has become a research hotspot.In this paper,we consider an UAV-enabled relaying network in which a fixed-wing UAV is deployed between the Base Station(BS)and Ground Users(GUs).We study the energy-efficiency gap between the link"BS-UAV-GUs"and the link"BS-GUs",and jointly optimize UAV relay transmission power and flight radius to achieve the highest energy-efficiency.Firstly,the UAV/BS-GUs channels models and the UAV energy consumption model are built.Secondly,the optimization objective function is formulated to maximize the energy-efficiency gap.Then,the solution of the optimization problem is divided into a two-step iteration process,in which the UAV relay transmission power and flight radius are adjusted to maximize the energy-efficiency gap.Finally,the experimental results under different simulation scenarios(such as cities,forests,deserts,oceans,etc.)are shown to illustrate the effec-tiveness of the proposed algorithm.The results show that the proposed algorithm can always find the optimal UAV relay transmission power and flight radius settings,and achieve the largest energy-efficiency gap.The convergency speed of the proposed algorithm is fast,and can obtain the optimal solution within only a few iterations.
文献关键词:
中图分类号:
作者姓名:
Chenxiao XIE;Xin-Lin HUANG
作者机构:
Department of Information and Communication Engineering,Tongji University,Shanghai 201804,China
文献出处:
引用格式:
[1]Chenxiao XIE;Xin-Lin HUANG-.Energy-efficiency maximization for fixed-wing UAV-enabled relay network with circular trajectory)[J].中国航空学报(英文版),2022(09):71-80
A类:
convergency
B类:
Energy,efficiency,maximization,fixed,wing,enabled,network,circular,trajectory,With,development,Unmanned,Aerial,Vehicles,UAVs,applications,have,been,extensively,explored,In,field,wireless,communications,nodes,are,often,used,extend,coverage,However,traditional,ground,relays,cannot,flexibly,deployed,due,their,low,heights,locations,Hence,deploying,promising,solution,has,become,research,hotspot,this,paper,consider,relaying,which,between,Base,Station,BS,Ground,Users,GUs,We,study,energy,gap,link,jointly,optimize,transmission,power,flight,radius,achieve,highest,Firstly,channels,models,consumption,built,Secondly,optimization,objective,function,formulated,maximize,Then,problem,divided,into,step,process,adjusted,Finally,experimental,results,under,different,simulation,scenarios,such,cities,forests,deserts,oceans,etc,shown,illustrate,effec,tiveness,proposed,algorithm,that,always,find,optimal,settings,largest,speed,fast,obtain,within,only,few,iterations
AB值:
0.535573
相似文献
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。