BER of Underwater Wireless Optical Communication Systems with SIMO Detection over Strong Oceanic Turbulence

被引:3
|
作者
Fu Y. [1 ,2 ]
机构
[1] College of Engineering, Huaqiao University, Fujian, Quanzhou
[2] Indust. Intelligent Technol. and Syst. Eng. Research Center of Fujian Colleges and Universities, Huaqiao University, Fujian, Quanzhou
来源
Journal of Optical Communications | 2022年 / 43卷 / 03期
关键词
bit-error-rate (BER); g amma -g amma distribution; oceanic turbulence; optimal combining; spatial diversity; underwater optical wireless communication;
D O I
10.1515/joc-2018-0222
中图分类号
学科分类号
摘要
A spherical wave propagates through the strong underwater turbulence media is modeled as gamma-gamma random variable in the underwater wireless optical communication (UWOC) systems. To mitigate turbulence-induced fading, spatial diversity over UWOC links is proposed. Furthermore, the exact bit error rate (BER) expressions for both single-input single-output (SISO) and single-input multiple-output (SIMO) UWOC systems with optimal combining based on on-off keying (OOK) modulation are analytically derived. Then the system performance is simulated with various variations of the underwater turbulence, i.e. the rate of dissipation of kinetic energy per unit mass of fluid, the ratio of temperature to salinity contributions to the refractive index spectrum, and the UWOC system link length. The results show that the analytical expressions for describing the system performance are valid and spatial diversity can considerably improve the system performance. © 2019 Walter de Gruyter GmbH, Berlin/Boston.
引用
收藏
页码:311 / 318
页数:7
相关论文
共 50 条
  • [21] BER Performance of the Polar-Coded Underwater Wireless Optical Communication
    Wu, Chen-chen
    He, Ning
    Jiang, Hong-yan
    Deng, Le-kun
    SEVENTH SYMPOSIUM ON NOVEL PHOTOELECTRONIC DETECTION TECHNOLOGY AND APPLICATIONS, 2021, 11763
  • [22] Optical Improved Quadrature Spatial Modulation for Cooperative Underwater Wireless Communication under Weak Oceanic Turbulence Conditions
    Bhowal, Anirban
    Kshetrimayum, Rakhesh Singh
    IET OPTOELECTRONICS, 2020, 14 (06) : 434 - 439
  • [23] Aperture averaging and BER for Gaussian beam in underwater oceanic turbulence
    Gokce, Muhsin Caner
    Baykal, Yahya
    OPTICS COMMUNICATIONS, 2018, 410 : 830 - 835
  • [24] Evaluation of Underwater Optical Wireless Channels Over F Turbulence for Different Detection Types
    Zedini, Emna
    Ata, Yalcin
    Al-Sallami, Farah Mahdi
    Rajbhandari, Sujan
    IEEE TRANSACTIONS ON COMMUNICATIONS, 2025, 73 (03) : 1925 - 1937
  • [25] The effect of turbulence on NLOS underwater wireless optical communication channels
    Sait, Mohammed
    Sun, Xiaobin
    Alkhazragi, Omar
    Alfaraj, Nasir
    Kong, Meiwei
    Ng, Tien Khee
    Ooi, Boon S.
    CHINESE OPTICS LETTERS, 2019, 17 (10)
  • [26] On the Capacity of Underwater Optical Wireless Communication Systems
    Rong, Yue
    Nordholm, Sven
    Duncan, Alec
    2021 FIFTH UNDERWATER COMMUNICATIONS AND NETWORKING CONFERENCE (UCOMMS), 2021,
  • [27] Underwater Wireless Optical Communication Systems: A Survey
    Sajmath, P. K.
    Ravi, Renjith, V
    Majeed, Abdul K. K.
    2020 7TH IEEE INTERNATIONAL CONFERENCE ON SMART STRUCTURES AND SYSTEMS (ICSSS 2020), 2020, : 83 - 89
  • [28] Performance Evaluation of Underwater Visible Light Communication System for Strong Oceanic Turbulence Channel
    Pandey, Priya
    Agrawal, Monika
    OCEANS 2023 - LIMERICK, 2023,
  • [29] Average Capacity of Optical Wireless Communication Systems Over Atmospheric Turbulence Channels
    Nistazakis, Hector E.
    Karagianni, Evangelia A.
    Tsigopoulos, Andreas D.
    Fafalios, Michael E.
    Tombras, George S.
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2009, 27 (5-8) : 974 - 979
  • [30] Impact of Artificial Seawater and Turbulence Factors on Underwater Optical Wireless Communication
    Afifah, Shofuro
    Marlina, Lina
    Chen, Chia-Chun
    Liu, Ya-Ling
    Liaw, Shien-Kuei
    Yeh, Chien-Hung
    2021 30TH WIRELESS AND OPTICAL COMMUNICATIONS CONFERENCE (WOCC 2021), 2021, : 110 - 114