VLC performance in underground vehicular tunnels

被引:0
|
作者
Ramzi, Sarmad R. [1 ]
Hameed, Samir M. [2 ]
Sabri, Atheer A. [1 ]
机构
[1] Univ Technol Iraq, Commun Engn Dept, Baghdad, Iraq
[2] Univ Informat Technol & Commun, Baghdad, Iraq
来源
OPTICS CONTINUUM | 2024年 / 3卷 / 10期
关键词
VISIBLE-LIGHT COMMUNICATION; VEHICLE; HANDOVER; SYSTEM;
D O I
10.1364/OPTCON.533167
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In recent years, the integration of intelligent transportation systems (ITS) has gained popularity as a means of enhancing the safety of roadways and underground tunnels and reducing traffic congestion. Given the fact that conventional radio frequency (RF) communication systems are vulnerable to significant limitations as a result of a variety of factors, including signal attenuation and interference, which affect their application, the emerging visible light communication (VLC) technology is an exciting potential candidate for facilitating wireless access in such environments. This study investigates the deployment of VLC systems in underground vehicular tunnels involving a handover strategy based on the software-defined network (SDN) approach, with the objective of addressing the fundamental challenges faced by communication systems in such scenarios. The Optisystem software is used to simulate and investigate the performance of the proposed system, which is based on orthogonal frequency division multiplexing (OFDM) technology in both line-of-sight (LOS) and non-line-of-sight (NLOS) conditions. The simulated scenario is capable of achieving a data rate of 10 Gbps within a link range of 3 meters in the LOS approach. In the NLOS propagation model, a data rate of 2 Gbps can be attained without any error. The simulation results reveal a particular perspective on the viability of VLC systems in improving the communication infrastructure in underground vehicular tunnels and promoting efficient tunnel operations. The evaluation of the simulated system is conducted based on bit error rate (BER), signal-to-noise ratio (SNR), and the constellation diagram. (c) 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:1990 / 2005
页数:16
相关论文
共 50 条
  • [1] Vehicular Communications in Tunnels using VLC
    Torres-Zapata, Edmundo
    Guerra, Victor
    Rabadan, Jose
    Perez-Jimenez, Rafael
    Martin Luna-Rivera, Jose
    2019 15TH INTERNATIONAL CONFERENCE ON TELECOMMUNICATIONS (CONTEL), 2019,
  • [2] A new VLC System for Localization in Underground Mining Tunnels
    Iturralde, D.
    Seguel, F.
    Soto, I.
    Azurdia, C.
    Khan, S.
    IEEE LATIN AMERICA TRANSACTIONS, 2017, 15 (04) : 581 - 587
  • [3] VLC tunnels
    Ramzi, Sarmad R.
    Hameed, Samir M.
    Sabri, Atheer A.
    Optics Continuum, 2024, 3 (10): : 1990 - 2005
  • [4] Poster: Vehicular VLC Experimental Modulation Performance Comparison
    Gurbilek, Gokhan
    Koca, Mertkan
    Turan, Bugra
    Ergen, Sinem Coleri
    2018 IEEE VEHICULAR NETWORKING CONFERENCE (VNC), 2018,
  • [5] Impact of Vehicle Type and Headlight Characteristics on Vehicular VLC Performance
    Memedi, Agon
    Tebruegge, Claas
    Jahneke, Julien
    Dressler, Falko
    2018 IEEE VEHICULAR NETWORKING CONFERENCE (VNC), 2018,
  • [6] Performance Analysis of Indoor Vehicular VLC Links for Autonomous Driving
    Eso, Elizabeth
    Jarchlo, Elnaz Alizadeh
    Ghassemlooy, Zabih
    Zvanovec, Stanislav
    Dressler, Falko
    Sathian, Juna
    2021 IEEE 32ND ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR AND MOBILE RADIO COMMUNICATIONS (PIMRC), 2021,
  • [7] On the Performance of MIMO-VLC Techniques in Underground Mining Environments
    Solis, Julian
    Palacios Jativa, Pablo
    Azurdia Meza, Cesar A.
    Zabala-Blanco, David
    Gutierrez, Carlos
    Kamal, Shaharyar
    Estevez, Claudio
    2023 IEEE LATIN-AMERICAN CONFERENCE ON COMMUNICATIONS, LATINCOM, 2023,
  • [8] A Survey of Vehicular VLC Methodologies
    Al Hasnawi, Rasha
    Marghescu, Ion
    SENSORS, 2024, 24 (02)
  • [9] UNDERGROUND TUNNELS
    GREGORY, C
    MECHANICAL ENGINEERING, 1971, 93 (11) : 62 - &
  • [10] Performance Enhancement of Vehicular VLC Using Spherical Detector and Efficient Lens Design
    Yahia, Selma
    Meraihi, Yassine
    Tu Dac Ho
    Eldeeb, Hossien B.
    2023 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE, WCNC, 2023,