Study On Optical Communications, Volume. 49, Issue 4, 1(2023)

Research Progress of High-speed Underwater Wireless Optical Communication System

Zhong-qi MAN1... Yu-bin TAN2, Xian-zhu LIU1 and Tian-shu Wang1,* |Show fewer author(s)
Author Affiliations
  • 1National and Local Joint Engineering Research Center of Space Optoelectronics Technology, Changchun University of Science and Technology, Changchun 130022, China
  • 2Unit 65547, Anshan 114200, China
  • show less
    References(48)

    [1] Zhu S, Chen X, Liu X et al. Recent Progress in and Perspectives of Underwater Wireless Optical Communication[J]. Progress in Quantum Electronics, 73, 100274(2020).

    [2] Partan J, Kurose J, Levine B N. A Survey of Practical Issues in Underwater Networks[J]. ACM SIGMOBILE Mobile Computing and Communications Review, 11, 23-33(2007).

    [3] Lanzagorta M. Underwater Communications[J]. Synthesis Lectures on Communications, 5, 978-3-031-01678-3(2013).

    [4] Gussen C M G, Diniz P S R, Campos M L R et al. A Survey of Underwater Wireless Communication Technologies[J]. Journal of Communication and Information Systems, 31, 242-255(2016).

    [5] Saeed N, Celik A, Al-Naffouri T Y et al. Underwater Optical Wireless Communications, Networking, and Localization:A Survey[C], 101935(2019).

    [6] Chi N, He F T, Duan Z L[M]. Key Technology of Underwater Visible Light Communication(2020).

    [7] Amer M, Al-Eryani Y. Underwater Optical Communication System Relayed by α-μ Fading Channel: Outage, Capacity and Asymptotic Analysis[DB/OL].

    [8] Yang Y, He F, Guo Q et al. Analysis of Underwater Wireless Optical Communication System Performance[J]. Applied Optics, 58, 9808-9814(2019).

    [9] Hanson F, Radic S. High Bandwidth Underwater Optical Communication[J]. Applied Optics, 47, 277-283(2008).

    [10] Al-Zhrani S, Bedaiwi N M, El-Ramli I F et al. Underwater Optical Communications: A Brief Overview and Recent Developments[J]. Engineered Science, 16, 146-186(2021).

    [11] Xu J, Song Y, Yu X et al. Underwater Wireless Transmission of High-speed QAM-OFDM Signals Using a Compact Red-light Laser[J]. Optics Express, 24, 8097-8109(2016).

    [12] Huang X H, Li C Y, Lu H H et al. 6-m/10-Gbps Underwater Wireless Red-light Laser Transmission System[J]. Optical Engineering, 57, 066110(2018).

    [13] Li C Y, Lu H H, Tsai W S et al. A 5 m/25 Gbps Underwater Wireless Optical Communication System[J]. IEEE Photonics Journal, 10, 2842762(2018).

    [14] Lu H H, Li C Y, Lin H H et al. An 8 m/9.6 Gbps Underwater Wireless Optical Communication System[J]. IEEE Photonics Journal, 8, 2601778(2016).

    [15] Li C Y, Lu H H, Tsai W S et al. 16 Gb/s PAM4 UWOC System based on 488-nm LD with Light Injection and Optoelectronic Feedback Techniques[J]. Optics Express, 25, 11598-11605(2017).

    [16] Kong M W, Lv W C, Ali T et al. 10-m 9.51-Gb/s RGB Laser Diodes-based WDM Underwater Wireless Optical Communication[J]. Optics Express, 25, 20829-20834(2017).

    [17] Arvanitakis G N, Bian R, McKendry J J D et al. Gb/s Underwater Wireless Optical Communications Using Series-connected GaN Micro-LED Arrays[J]. IEEE Photonics Journal, 12, 2959656(2020).

    [18] Ishibashi S, Susuki K I. 1 Gbps×100 m Underwater Optical Wireless Communication Using Laser Module in Deep Sea[C], 9976975(2022).

    [19] Zhang C, Wei Z X, Li X Y et al. 3.8 Gb/s PAM-4 UWOC System over a 2-m Underwater Channel Enabled by a Single-pixel 175-μm GaN-based Mini-LED[J]. IEEE Photonics Journal, 14, 3145188(2022).

    [20] Li X Y, Cheng C, Zhang C et al. Net 4 Gb/s Underwater Optical Wireless Communication System over 2 m Using a Single-pixel GaN-based Blue Mini-LED and Linear Equalization[J]. Optics Letters, 47, 1976-1979(2022).

    [21] Maclure D M, Chen C, McKendry J J D et al. Hundred-meter Gb/s Deep Ultraviolet Wireless Communications Using AlGaN Micro-LEDs[J]. Optics Express, 30, 46811-46821(2022).

    [22] Weng Y, Maki T. Observability Analysis of Underwater Wireless Optical Communication Alignment between Auvs[C], 9738730(2021).

    [23] Ghazy A S, Hranilovic S, Khalighi M A. Angular MIMO for Underwater Wireless Optical Communications: Link Modeling and Tracking[J]. IEEE Journal of Oceanic Engineering, 46, 1391-1407(2021).

    [24] Li J H, Wang F M, Zhao M M et al. Large-coverage Underwater Visible Light Communication System based on Blue LED Employing Equal Gain Combining with Integrated PIN Array Reception[J]. Applied Optics, 58, 383-388(2019).

    [25] Nakamura K, Nagaoka K, Matsuo D et al. Over 1 Gbit/s NRZ-OOK Underwater Wireless Optical Transmission Experiment Using Wideband PMT[C], 8817830(2019).

    [26] Zhang L, Tang X, Sun C et al. Over 10 Attenuation Length Gigabits per Second Underwater Wireless Optical Communication Using a Silicon Photomultiplier (SiPM) based Receiver[J]. Optics Express, 28, 24968-24980(2020).

    [27] Sait M, Trichili A, Alkhazragi O et al. Dual-wavelength Luminescent Fibers Receiver for Wide Field-of-view, Gb/s Underwater Optical Wireless Communication[J]. Optics Express, 29, 38014-38026(2021).

    [28] Hong X, Du J, Wang Y et al. Experimental Demonstration of 55-m/2-Gbps Underwater Wireless Optical Communication Using SiPM Diversity Reception and Nonlinear Decision-feedback Equalizer[J]. IEEE Access, 10, 47814-47823(2022).

    [29] Pandey P K. MIMO based High-speed Underwater Optical Wireless Communication Using WDM[C], 9741053(2022).

    [30] Fei C, Wang Y, Du J et al. 100-m/3-Gbps Underwater Wireless Optical Transmission Using a Wideband Photomultiplier Tube (PMT)[J]. Optics Express, 30, 2326-2337(2022).

    [31] Pandey P, Agrawal M. High Speed and Long Range Underwater Optical Wireless Communication[C], 9389197(2020).

    [32] Oubei H M, Duran J R, Janjua B et al. 4.8 Gbit/s 16-QAM-OFDM Transmission based on Compact 450-nm Laser for Underwater Wireless Optical Communication[J]. Optics Express, 23, 23302-23309(2015).

    [33] Shen C, Guo Y, Oubei H M et al. 20-meter Underwater Wireless Optical Communication Link with 1.5 Gbps Data Rate[J]. Optics Express, 24, 25502-25509(2016).

    [34] Baghdady J, Miller K, Morgan K et al. Multi-gigabit/s Underwater Optical Communication Link Using Orbital Angular Momentum Multiplexing[J]. Optics Express, 24, 9794-9805(2016).

    [35] Chen Y, Kong M, Ali T et al. 26 m/5.5 Gbps Air-water Optical Wireless Communication based on an OFDM-Modulated 520-nm Laser Diode[J]. Optics Express, 25, 14760-14765(2017).

    [36] Fei C, Zhang J, Zhang G et al. Demonstration of 15-m 7.33-Gb/s 450-nm Underwater Wireless Optical Discrete Multitone Transmission Using Post Nonlinear Equalization[J]. Journal of Lightwave Technology, 36, 728-734(2018).

    [37] Huang Y F, Tsai C T, Chi Y C et al. Filtered Multicarrier OFDM Encoding on Blue Laser Diode for 14.8-Gbps Seawater Transmission[J]. Journal of Lightwave Technology, 36, 1739-1745(2017).

    [38] Chi N, Zhao Y, Shi M et al. Gaussian Kernel-aided Deep Neural Network Equalizer Utilized in Underwater PAM8 Visible Light Communication System[J]. Optics Express, 26, 26700-26712(2018).

    [39] Fei C, Hong X, Zhang G et al. 16.6 Gbps Data Rate for Underwater Wireless Optical Transmission with Single Laser Diode Achieved with Discrete Multi-tone and Post Nonlinear Equalization[J]. Optics Express, 26, 34060-34069(2018).

    [40] Wang F, Liu Y, Jiang F et al. High Speed Underwater Visible Light Communication System based on LED Employing Maximum Ratio Combination with Multi-PIN Reception[J]. Optics Communications, 425, 106-112(2018).

    [41] Fei C, Hong X, Zhang G et al. Improving the Performance of Long Reach UOWC with Multiband DFT-Spread DMT[J]. IEEE Photonics Technology Letters, 31, 1315-1318(2019).

    [42] Hong X, Fei C, Zhang G et al. Discrete Multitone Transmission for Underwater Optical Wireless Communication System Using Probabilistic Constellation Shaping to Approach Channel Capacity Limit[J]. Optics Letters, 44, 558-561(2019).

    [43] Lu C H, Wang J M, Li S B et al. 60 m/2.5 Gbps Underwater Optical Wireless Communication with NRZ-OOK Modulation and Digital Nonlinear Equalization[C], SM2G.6(2019).

    [44] Chen X, Lü W, Zhang Z et al. 56-m/3.31-Gbps Underwater Wireless Optical Communication Employing Nyquist Single Carrier Frequency Domain Equalization with Noise Prediction[J]. Optics Express, 28, 23784-23795(2020).

    [45] Li G, Hu F, Zou P et al. Advanced Modulation Format of Probabilistic Shaping Bit Loading for 450-nm GaN Laser Diode based Visible Light Communication[J]. Sensors, 20, 6143(2020).

    [46] Dai Y, Chen X, Yang X et al. 200-m/500-Mbps Underwater Wireless Optical Communication System Utilizing a Sparse Nonlinear Equalizer with a Variable Step Size Generalized Orthogonal Matching Pursuit[J]. Optics Express, 29, 32228-32243(2021).

    [47] Chen J H, Geldard C T, Guler E et al. An Experimental Demonstration of FSK-SIM-PDM Underwater Optical Wireless Communications[C], 9905701(2022).

    [48] Singh M, Singh M L, Singh R. Performance Enhancement of 112 Gbps UWOC Link by Mitigating the Air Bubbles Induced Turbulence with Coherent Detection MIMO DP-16QAM and Advanced Digital Signal Processing[J]. Optik, 259, 168986(2022).

    Tools

    Get Citation

    Copy Citation Text

    Zhong-qi MAN, Yu-bin TAN, Xian-zhu LIU, Tian-shu Wang. Research Progress of High-speed Underwater Wireless Optical Communication System[J]. Study On Optical Communications, 2023, 49(4): 1

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Research Articles

    Received: Apr. 20, 2023

    Accepted: --

    Published Online: Nov. 22, 2023

    The Author Email: Wang Tian-shu (wangts@cust.edu,cn)

    DOI:10.13756/j.gtxyj.2023.04.001

    Topics