Performance Evaluation of Underwater Wireless Optical Communication System by Varying the Environmental Parameters

被引:9
|
作者
Li, Dong-Chang [1 ]
Chen, Chia-Chun [1 ]
Liaw, Shien-Kuei [1 ,2 ]
Afifah, Shofuro [2 ]
Sung, Jiun-Yu [1 ]
Yeh, Chien-Hung [3 ]
机构
[1] Natl Taiwan Univ Sci & Technol, Dept Elect & Comp Engn, Taipei 106335, Taiwan
[2] Natl Taiwan Univ Sci & Technol, Grad Inst Electroopt Engn, Taipei 106335, Taiwan
[3] Feng Chia Univ, Dept Photon, Taichung 40724, Taiwan
关键词
underwater wireless optical communication; bit error rate; temperature; turbulence; artificial seawater; environmental factors;
D O I
10.3390/photonics8030074
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Underwater wireless optical communication (UWOC) has been considered a promising technology for high-speed underwater transmission. Some Gb/s level UWOC systems applying visible light have been demonstrated with a transmission distance of several meters or more. Many of the previous works focus on the advanced technologies to push the systems' capacity-distance performance. However, practical environmental factors issue such as flow turbulence and temperature variation are seldom studied through specific statistical/theoretical models. In this paper, a UWOC system using a 450 nm blue light laser source was set up using a 1.5-m water tank with mirrors located on both sides for single or multiple reflections corresponding to different transmission distances. The blue laser was modulated by a 1.25 Gbps NRZ-OOK format with PRBS of 7, 24 or 31, respectively, for system performance comparison. The bit error rate (BER) values were measured in 1.5, 3.0 and 6 m, respectively, for system evaluation. At room temperature, the BER value was down to 10 x 10(-8) for a 1.25 Gbps data rate in a 6 m transmission. Then, the UWOC transmission system experiment was carried out under several environmental parameters such as temperature, turbulence, artificial seawater by adding salt to simulate practical application in river or sea. When a submerged motor with an output of 1200 L/h was used as a water flow turbulence source, the impact to BER and transmission quality was negligible. For the temperature change issue, the experiment shows that around the original temperature of 25 degrees C had the best BER as compared to other temperature ranges from 10 to 50 degrees C. For artificial seawater issues by adding salt to simulate the real seawater environment. The transmission distance was only 3-m instead of 6 m, mainly due to particle scattering and water disturbance. With the motor pump on, the power penalty was 1 dB at 10 x 10(-8) BER when compared to the motor pump off.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Analysis of underwater wireless optical communication system performance
    Yang, Yi
    He, Fengtao
    Guo, Qiuping
    Wang, Min
    Zhang, Jianlei
    Duan, Zuoliang
    [J]. APPLIED OPTICS, 2019, 58 (36) : 9808 - 9814
  • [2] Study of Performance Enhancement in Underwater Optical Wireless Communication System
    Singh, Pooja
    Chaitanya, Krishna
    Sonali
    Dixit, Abhishek
    Jain, Virander Kumar
    [J]. 2020 IEEE INTERNATIONAL CONFERENCE ON ADVANCED NETWORKS AND TELECOMMUNICATIONS SYSTEMS (IEEE ANTS), 2020,
  • [3] Performance Evaluation of Underwater Optical Wireless Communication Depending on the Modulation Scheme
    Jeong, Gabin
    Kim, Sung-Man
    [J]. CURRENT OPTICS AND PHOTONICS, 2022, 6 (01) : 39 - 43
  • [4] Investigation on effects of system parameters on transmission depth in underwater wireless optical communication
    Kumar, Sanjay
    Prince, Shanthi
    Kumar, G. Santosh
    [J]. PHOTONIC NETWORK COMMUNICATIONS, 2021, 41 (02) : 163 - 176
  • [5] Investigation on effects of system parameters on transmission depth in underwater wireless optical communication
    Sanjay Kumar
    Shanthi Prince
    G. Santosh Kumar
    [J]. Photonic Network Communications, 2021, 41 : 163 - 176
  • [6] Performance Evaluation of OOK and PAM Modulations in Underwater Optical Wireless Communication System Based on APD Receiver
    Chen, Daomin
    Li, Chao
    Xu, Zhengyuan
    [J]. 2017 16TH INTERNATIONAL CONFERENCE ON OPTICAL COMMUNICATIONS & NETWORKS (ICOCN 2017), 2017,
  • [7] Modeling and performance evaluation of underwater wireless optical communication system in the presence of different sized air bubbles
    Mandeep Singh
    Maninder Lal Singh
    Gurpreet Singh
    Hardeep Kaur
    Sehajpal Priyanka
    [J]. Optical and Quantum Electronics, 2020, 52
  • [8] Modeling and performance evaluation of underwater wireless optical communication system in the presence of different sized air bubbles
    Singh, Mandeep
    Singh, Maninder Lal
    Singh, Gurpreet
    Kaur, Hardeep
    Priyanka
    Kaur, Sehajpal
    [J]. Optical and Quantum Electronics, 2020, 52 (12):
  • [9] Modeling and performance evaluation of underwater wireless optical communication system in the presence of different sized air bubbles
    Singh, Mandeep
    Singh, Maninder Lal
    Singh, Gurpreet
    Kaur, Hardeep
    Priyanka
    Kaur, Sehajpal
    [J]. OPTICAL AND QUANTUM ELECTRONICS, 2020, 52 (12)
  • [10] Performance evaluation and comparative research of underwater wireless optical communication system by using different structured beams
    He, Shuang
    Zhang, Peng
    Yu, Hao
    Tian, Dongsheng
    Chen, Hang
    Dai, Hui
    Ye, Pengfei
    Wang, Dashuai
    Tong, Shoufeng
    [J]. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2024, 41 (06) : B48 - B54