Design and Implementation of Optical Fiber-based Visible Light Communication System

被引:1
作者
Ling, Zixuan [1 ]
Chen, Xuanbang [1 ,2 ]
Wang, Yuhao [1 ]
Zhang, Xun [2 ]
Liu, Xiaodong [1 ]
Wang, Zhenghai [1 ]
机构
[1] Nanchang Univ, Nanchang, Jiangxi, Peoples R China
[2] Inst Super Elect Paris, Paris, France
来源
2024 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS, ISCAS 2024 | 2024年
基金
欧盟地平线“2020”; 中国国家自然科学基金;
关键词
Visible light communication; optical fiber; analog equalizer; LED driver; VLC; NETWORKS;
D O I
10.1109/ISCAS58744.2024.10558260
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The rapid evolution of next-generation communication technology has underscored the critical challenge of spectrum resource scarcity. Visible light communication (VLC) is widely recognized as a promising solution to tackle this issue. Benefits from the rich spectrum resources and no electromagnetic interference radiation, VLC can be widely used in various indoor communication scenarios. However, the accessing of the existing network for the VLC system still remains a challenge. Thus, an optical fiber-based VLC structure is proposed to unlock traditional network cable transmission for the first time. Specifically, an optoelectronic media converter is designed to efficiently connect the fiber signal and the desired electrical signal. Moreover, an analog equalizer with low implementation complexity is exploited to extend the LED bandwidth, ensuring transmitted signals without distortion. It is worth noting that the VLC receiver adopts the auto gain control amplifier to meet the signal voltage requirement of the Ethernet physical layer. Experimental testbed is conducted and corresponding results demonstrated that the transmission rate of the proposed VLC system can reach 100Mbps with sufficiently low bit error rate. Therefore, this validates the capability of the proposed system to directly connect the VLC access point with the existing optical network facilities.
引用
收藏
页数:4
相关论文
共 16 条
[1]  
Ariyanti S, 2020, PROCEEDINGS OF THE 2020 FOURTH WORLD CONFERENCE ON SMART TRENDS IN SYSTEMS, SECURITY AND SUSTAINABILITY (WORLDS4 2020), P490, DOI 10.1109/WorldS450073.2020.9210383
[2]   Experimental demonstration of a 10BASE-T Ethernet visible light communications system using white phosphor light-emitting diodes [J].
Burton, Andrew ;
Bentley, Edward ;
Le Minh, Hoa ;
Ghassemlooy, Zabih ;
Aslam, Nauman ;
Liaw, Shien-Kuei .
IET CIRCUITS DEVICES & SYSTEMS, 2014, 8 (04) :322-330
[3]   A Hybrid Active-Passive Single-Order Equalizer for Visible Light Communication Systems [J].
Chen, Xuanbang ;
Wang, Yuhao ;
Liu, Xiaodong ;
Wang, Zhenghai ;
Zhang, Xun ;
Zhou, Fuhui ;
Ng, Derrick Wing Kwan .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2023, 35 (24) :1395-1398
[4]   RGB-based VLC system using 5G NR standard [J].
de Oliveira, M. A. ;
Lima, E. S. ;
Cunha, M. S. P. ;
Abreu, M. ;
Cerqueira, Arismar S., Jr. .
OPTICS COMMUNICATIONS, 2021, 481
[5]   Design and Implementation of an Ethernet-VLC Interface for Broadcast Transmissions [J].
Delgado, F. ;
Quintana, I. ;
Rufo, J. ;
Rabadan, J. A. ;
Quintana, Crisanto ;
Perez-Jimenez, R. .
IEEE COMMUNICATIONS LETTERS, 2010, 14 (12) :1089-1091
[6]   Applying VLC in 5G Networks: Architectures and Key Technologies [J].
Feng, Lifang ;
Hu, Rose Qingyang ;
Wang, Jianping ;
Xu, Peng ;
Qian, Yi .
IEEE NETWORK, 2016, 30 (06) :77-83
[7]  
Hu Pengfei, 2016, VLCS 16 P 3 WORKSH V, P31
[8]   LED Based Indoor Visible Light Communications: State of the Art [J].
Karunatilaka, Dilukshan ;
Zafar, Fahad ;
Kalavally, Vineetha ;
Parthiban, Rajendran .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2015, 17 (03) :1649-1678
[9]   A 550 Mbit/s real-time visible light communication system based on phosphorescent white light LED for practical high-speed low-complexity application [J].
Li, Honglei ;
Chen, Xiongbin ;
Guo, Junqing ;
Chen, Hongda .
OPTICS EXPRESS, 2014, 22 (22) :27203-27213
[10]  
Lina Shi, 2018, 2018 25th IEEE International Conference on Electronics, Circuits and Systems (ICECS), P61, DOI 10.1109/ICECS.2018.8617851