Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications

In this paper, the integrated free-space optics (FSO) and fiber optic model is evaluated using new radio (NR) sub-THz link to sustain next generation 5G capacity. The proposed integrated model effectively applies over 25 km single mode fiber, 0.5 m RF wireless, and 500 m optical wireless. In additio...

Full description

Bibliographic Details
Main Authors: Meshari Alsharari, Khaled Aliqab, Farman Ali, Ammar Armghan
Format: Article
Language:English
Published: Hindawi Limited 2023-01-01
Series:International Journal of Optics
Online Access:http://dx.doi.org/10.1155/2023/8685686
_version_ 1797945548072812544
author Meshari Alsharari
Khaled Aliqab
Farman Ali
Ammar Armghan
author_facet Meshari Alsharari
Khaled Aliqab
Farman Ali
Ammar Armghan
author_sort Meshari Alsharari
collection DOAJ
description In this paper, the integrated free-space optics (FSO) and fiber optic model is evaluated using new radio (NR) sub-THz link to sustain next generation 5G capacity. The proposed integrated model effectively applies over 25 km single mode fiber, 0.5 m RF wireless, and 500 m optical wireless. In addition, four different sub-THz frequencies (125, 150, 175, and 200 GHz) are estimated on NR-based 5G FSO network, including 22 Gbps 64quadrature amplitude modulation-orthogonal frequency division multiplexing (64QAM-OFDM) signal speed. The proposed FSO enabled fiber optic system is also measured mathematically to satisfy the data transmission accuracy. For confirmation, the theoretical approach of the presented FSO and fiber optic network is realized with an aggregate 342 Gbps speed 16×22. The performance metrics comprising forward error limit (FEL), bit error rate (BER), and error vector magnitude (EVM) are used for weighing simulation results. The outlets of an integrated fiber-FSO network show that by applying NR 5G sub-THz, a high data rate with multiple inputs and multiple outputs (MIMO) transmission capacity can be adjusted victoriously.
first_indexed 2024-04-10T20:56:51Z
format Article
id doaj.art-8db3382cb9a54ff2bb794a74164af57c
institution Directory Open Access Journal
issn 1687-9392
language English
last_indexed 2024-04-10T20:56:51Z
publishDate 2023-01-01
publisher Hindawi Limited
record_format Article
series International Journal of Optics
spelling doaj.art-8db3382cb9a54ff2bb794a74164af57c2023-01-23T00:56:24ZengHindawi LimitedInternational Journal of Optics1687-93922023-01-01202310.1155/2023/8685686Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity CommunicationsMeshari Alsharari0Khaled Aliqab1Farman Ali2Ammar Armghan3Department of Electrical EngineeringDepartment of Electrical EngineeringDepartment of Electrical EngineeringDepartment of Electrical EngineeringIn this paper, the integrated free-space optics (FSO) and fiber optic model is evaluated using new radio (NR) sub-THz link to sustain next generation 5G capacity. The proposed integrated model effectively applies over 25 km single mode fiber, 0.5 m RF wireless, and 500 m optical wireless. In addition, four different sub-THz frequencies (125, 150, 175, and 200 GHz) are estimated on NR-based 5G FSO network, including 22 Gbps 64quadrature amplitude modulation-orthogonal frequency division multiplexing (64QAM-OFDM) signal speed. The proposed FSO enabled fiber optic system is also measured mathematically to satisfy the data transmission accuracy. For confirmation, the theoretical approach of the presented FSO and fiber optic network is realized with an aggregate 342 Gbps speed 16×22. The performance metrics comprising forward error limit (FEL), bit error rate (BER), and error vector magnitude (EVM) are used for weighing simulation results. The outlets of an integrated fiber-FSO network show that by applying NR 5G sub-THz, a high data rate with multiple inputs and multiple outputs (MIMO) transmission capacity can be adjusted victoriously.http://dx.doi.org/10.1155/2023/8685686
spellingShingle Meshari Alsharari
Khaled Aliqab
Farman Ali
Ammar Armghan
Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
International Journal of Optics
title Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
title_full Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
title_fullStr Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
title_full_unstemmed Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
title_short Integrated Free-Space Optics and Fiber Optic Network Performance Enhancement for Sustaining 5G High Capacity Communications
title_sort integrated free space optics and fiber optic network performance enhancement for sustaining 5g high capacity communications
url http://dx.doi.org/10.1155/2023/8685686
work_keys_str_mv AT mesharialsharari integratedfreespaceopticsandfiberopticnetworkperformanceenhancementforsustaining5ghighcapacitycommunications
AT khaledaliqab integratedfreespaceopticsandfiberopticnetworkperformanceenhancementforsustaining5ghighcapacitycommunications
AT farmanali integratedfreespaceopticsandfiberopticnetworkperformanceenhancementforsustaining5ghighcapacitycommunications
AT ammararmghan integratedfreespaceopticsandfiberopticnetworkperformanceenhancementforsustaining5ghighcapacitycommunications