Acquisition and tracking for underwater optical communications

被引:12
|
作者
Williams, Andrew J. [1 ]
Laycock, Leslie L. [1 ]
Griffith, Michael S. [1 ]
McCarthy, Andrew G. [1 ]
Rowe, Duncan P. [1 ]
机构
[1] BAE Syst Appl Intelligence Labs, West Hanningfield Rd, Great Baddow CM2 8HN, Essex, England
来源
ADVANCED FREE-SPACE OPTICAL COMMUNICATION TECHNIQUES AND APPLICATIONS III | 2017年 / 10437卷
关键词
Acquisition; Tracking; Underwater; Optical; Communications; FSO; Laser; SiPM;
D O I
10.1117/12.2282170
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
There is a growing requirement to transfer large volumes of data between underwater platforms. As seawater is transmissive in the visible band, underwater optical communications is an active area of interest since it offers the potential for power efficient, covert and high bandwidth datalinks at short to medium ranges. Short range systems have been successfully demonstrated using sources with low directionality. To realise higher data rates and/or longer ranges, the use of more efficient directional beams is required; by necessity, these must be sufficiently aligned to achieve the required link margin. For mobile platforms, the acquisition and tracking of each node is therefore critical in order to establish and maintain an optical datalink. This paper describes work undertaken to demonstrate acquisition and tracking in a 3D underwater environment. A range of optical sources, beam steering technologies, and tracking sensors have been assessed for suitability. A novel scanning strategy exploiting variable beam divergence was developed to provide robust acquisition whilst minimising acquisition time. A prototype system was assembled and demonstrated in a large water tank. This utilised custom quadrant detectors based on Silicon PhotoMultiplier (SiPM) arrays for fine tracking, and a Wide Field of View (WFoV) sCMOS camera for link acquisition. Fluidic lenses provided dynamic control of beam divergence, and AC modulation/filtering enabled background rejection. The system successfully demonstrated robust optical acquisition and tracking between two nodes with only nanowatt received optical powers. The acquisition time was shown to be dependent on the initial conditions and the transmitted optical power.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Assessment of Laser Tracking and Data Transfer for Underwater Optical Communications
    Watson, Malcolm A.
    Blanchard, Paul M.
    Stace, Chris
    Bhogal, Priya K.
    White, Henry J.
    Kelly, Anthony E.
    Watson, Scott
    Valyrakis, Manousos
    Najda, Stephen P.
    Marona, Lucja
    Perlin, Piotr
    UNMANNED/UNATTENDED SENSORS AND SENSOR NETWORKS X, 2014, 9248
  • [2] Demonstration of Vehicle-to-Vehicle Optical Pointing, Acquisition, and Tracking for Undersea Laser Communications
    Hardy, Nicholas D.
    Rao, Hemonth G.
    Conrad, Stephen D.
    Howe, Thomas R.
    Scheinbart, Marvin S.
    Kaminsky, Richard D.
    Hamilton, Scott A.
    FREE-SPACE LASER COMMUNICATIONS XXXI, 2019, 10910
  • [3] Machine-vision-based acquisition, pointing, and tracking system for underwater wireless optical communications
    Lin, Jiaming
    Du, Zihao
    Yu, Chuying
    Ge, Wenmin
    Lu, Weichao
    Deng, Huan
    Zhang, Chao
    Chen, Xiao
    Zhang, Zejun
    Xu, Jing
    CHINESE OPTICS LETTERS, 2021, 19 (05)
  • [4] Non-visible Light Underwater Optical Communications
    Farr, N. E.
    Pontbriand, C. T.
    Ware, J. D.
    Pelletier, L. -P. A.
    2016 IEEE THIRD UNDERWATER COMMUNICATIONS AND NETWORKING CONFERENCE (UCOMMS), 2016,
  • [5] A Survey on Acquisition, Tracking, and Pointing Mechanisms for Mobile Free-Space Optical Communications
    Kaymak, Yagiz
    Rojas-Cessa, Roberto
    Feng, Jianghua
    Ansari, Nirwan
    Zhou, MengChu
    Zhang, Tairan
    IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2018, 20 (02): : 1104 - 1123
  • [6] Temporal Response of the Underwater Optical Channel for High-Bandwidth Wireless Laser Communications
    Cochenour, Brandon
    Mullen, Linda
    Muth, John
    IEEE JOURNAL OF OCEANIC ENGINEERING, 2013, 38 (04) : 730 - 742
  • [7] Angular MIMO for Underwater Wireless Optical Communications: Link Modeling and Tracking
    Ghazy, Abdallah S.
    Hranilovic, Steve
    Khalighi, Mohammad-Ali
    IEEE JOURNAL OF OCEANIC ENGINEERING, 2021, 46 (04) : 1391 - 1407
  • [8] Research on the acquisition and tracking simulation system of light beacon in satellite-ground optical communications
    左韬
    艾勇
    黄海波
    苏贵波
    OptoelectronicsLetters, 2010, 6 (06) : 458 - 461
  • [9] Underwater Orbital Angular Momentum Optical Communications
    Wang Jian
    Wang Zhongyang
    ACTA OPTICA SINICA, 2024, 44 (04)
  • [10] Underwater optical wireless communications, networking, and localization: A survey
    Saeed, Nasir
    Celik, Abdulkadir
    Al-Naffouri, Tareq Y.
    Alouini, Mohamed-Slim
    AD HOC NETWORKS, 2019, 94