Performance Analysis of a Vertical FSO Link with Energy Harvesting Strategy

被引:11
作者
Alvarez-Roa, Carmen [1 ]
Alvarez-Roa, Maria [1 ]
Martin-Vega, Francisco J. [1 ]
Castillo-Vazquez, Miguel [1 ]
Raddo, Thiago [1 ,2 ]
Jurado-Navas, Antonio [1 ]
机构
[1] Univ Malaga, Univ Inst Telecommun Res TELMA, CEI Andalucia Tech, E-29071 Malaga, Spain
[2] Fed Univ ABC, Engn Modeling & Appl Social Sci Ctr, Ave Estados 5001, BR-09210580 Santo Andre, SP, Brazil
关键词
BER; vertical link; pointing errors; FSO; OOK; energy harvesting; atmospheric turbulence; SPACE OPTICAL COMMUNICATION; POINTING ERRORS; PROBABILITY; SYSTEMS; OPTIMIZATION; ARCHITECTURE; INFORMATION; FRAMEWORK; NETWORKS; IMPACT;
D O I
10.3390/s22155684
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this paper we investigate the application of free space optical (FSO) communications, energy harvesting, and unmanned aerial vehicles (UAVs) as key technology enablers of a cost-efficient backhaul/fronthaul framework for 5G and beyond (5G+) networks. This novel approach is motivated by several facts. First, the UAVs, acting as relay nodes, represent an easy-to-deploy and adaptive network that can provide line-of-sight between the base stations and the gateways connected to the core network. Second, FSO communications offer high data rates between the UAVs and the network nodes, while avoiding any potential interference with the 5G radio access networks. Third, energy harvesting in the optical domain has the potential to extend the UAVs' battery life. Nevertheless, the presence of atmospheric turbulence, atmospheric attenuation, and pointing errors in the FSO links severely degrades their performance. For this reason an accurate yet tractable modelling framework is required to fully understand whether an UAV-FSO backhaul/fronthaul network with energy harvesting can be applied. To this end, we consider a composite channel attenuation model that includes the effect of turbulence fading, pointing errors, and atmospheric attenuation. Using this model, we derive analytical closed-form expressions of the average harvested energy as a function of the FSO link parameters. These expressions can be used to improve energy harvesting efficiency in FSO link design. We have applied our proposed expressions to evaluate the energy harvested in vertical FSO links for a variety of real scenarios under a modified on-off keying (OOK) scheme optimized for energy harvesting. From the simulations carried out in this paper, we demonstrate that significant values of harvested energy can be obtained. Such performance enhancement can complement the existing deployment charging stations.
引用
收藏
页数:21
相关论文
共 59 条
[1]  
3GPP, 2017, Technical Report (TR) 38.802
[2]  
3GPP, 2022, Technical Report TR 38.901
[3]   Free Space Optical Cooperative Communications via an Energy Harvesting Harvest-Store-Use Relay [J].
Abou-Rjeily, Chadi ;
Kaddoum, Georges .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2020, 19 (10) :6564-6577
[4]   Ground-to-air FSO communications: when high data rate communication meets efficient energy harvesting with simple designs [J].
Abou-Rjeily, Chadi ;
Kaddoum, Georges ;
Karagiannidis, George K. .
OPTICS EXPRESS, 2019, 27 (23) :34080-34093
[5]   Mathematical model for the irradiance probability density function of a laser beam propagating through turbulent media [J].
Al-Habash, MA ;
Andrews, LC ;
Phillips, RL .
OPTICAL ENGINEERING, 2001, 40 (08) :1554-1562
[6]   Performance analysis of atmospheric optical communication systems with spatial diversity affected by correlated turbulence [J].
Alvarez-Roa, M. ;
Alvarez-Roa, C. ;
Fernandez-Aragon, F. ;
Raddo, T. ;
Garrido-Balsells, J. M. ;
Tafur-Monroy, I ;
Jurado-Navas, A. .
JOURNAL OF OPTICAL COMMUNICATIONS AND NETWORKING, 2022, 14 (07) :524-539
[7]   FSO-Based Vertical Backhaul/Fronthaul Framework for 5G+Wireless Networks [J].
Alzenad, Mohamed ;
Shakir, Muhammad Z. ;
Yanikomeroglu, Halim ;
Alouini, Mohamed-Slim .
IEEE COMMUNICATIONS MAGAZINE, 2018, 56 (01) :218-224
[8]  
Andrews L. C., 2005, Laser Beam Propag Through Random Media, DOI DOI 10.1117/3.626196
[9]   Theory of optical scintillation [J].
Andrews, LC ;
Phillips, RL ;
Hopen, CY ;
Al-Habash, MA .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1999, 16 (06) :1417-1429
[10]  
[Anonymous], 2015, TECHNOLOGY DEMONSTRA