Εμφάνιση απλής εγγραφής

dc.creatorGuo W., Zhan Y., Tsiftsis T.A., Yang L.en
dc.date.accessioned2023-01-31T08:27:22Z
dc.date.available2023-01-31T08:27:22Z
dc.date.issued2022
dc.identifier10.1109/JLT.2022.3176352
dc.identifier.issn07338724
dc.identifier.urihttp://hdl.handle.net/11615/73735
dc.description.abstractUnmanned Aerial Vehicle (UAV)-assisted free-space optical (FSO) communication has become a promising solution in both civil and military applications. Nevertheless, hovering UAV-assisted FSO links suffer from several losses due to atmospheric turbulence, pointing errors (PEs), angle-of-arrival (AOA) fluctuations, and link attenuation related to various weather conditions. In this paper, we optimize the theoretical channel model for hovering UAV-assisted FSO links considering all the above destructive channel factors. Our optimized theoretical channel model agrees with the Monte-Carlo simulation results much better under the full range of channel coefficients compared to previous published works. Based on our optimized theoretical channel model, theoretical expressions of the link outage probability, ergodic and outage capacity, and bit error rate are derived. The impact of various parameters, such as Rytov variance, root-mean-squares (RMS) of PEs and AOA fluctuations, angle of field-of-view, rain rate, visibility, optical beam divergence angle, and transmitted power on the above performance metrics is analytically studied and corroborated by Monte-Carlo simulations. Simulation results also show that for a given receiving aperture, transmit power, and link length, the performance of the hovering UAV-assisted FSO links can be optimized by carefully designing the ratio of optical beam divergence angle to RMS of PEs. © 1983-2012 IEEE.en
dc.language.isoenen
dc.sourceJournal of Lightwave Technologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85130479094&doi=10.1109%2fJLT.2022.3176352&partnerID=40&md5=b60d1a4f389af42e344f224ec08483e8
dc.subjectAdaptive opticsen
dc.subjectAntennasen
dc.subjectAtmospheric thermodynamicsen
dc.subjectAtmospheric turbulenceen
dc.subjectBit error rateen
dc.subjectElectric power utilizationen
dc.subjectErrorsen
dc.subjectFading channelsen
dc.subjectIntelligent systemsen
dc.subjectMilitary applicationsen
dc.subjectMonte Carlo methodsen
dc.subjectOptical fiber communicationen
dc.subjectOptical fibersen
dc.subjectOutagesen
dc.subjectAngle of arrival fluctuationsen
dc.subjectAtmospheric modelingen
dc.subjectAttenuationen
dc.subjectChannel modellingen
dc.subjectFree-space opticalen
dc.subjectOptical attenuatorsen
dc.subjectOptical beamsen
dc.subjectOptical-fiber communicationen
dc.subjectPointing erroren
dc.subjectPointing errorsen
dc.subjectUnmanned aerial vehicles (UAV)en
dc.subjectInstitute of Electrical and Electronics Engineers Inc.en
dc.titlePerformance and Channel Modeling Optimization for Hovering UAV-Assisted FSO Linksen
dc.typejournalArticleen


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