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Laser-based visible light communications and underwater wireless optical communications: a device perspective (invited paper)

机译:基于激光的可见光通信和水下无线光通信:设备角度(特邀论文)

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摘要

High-speed visible light communications (VLC) has been identified at an essential part of communication technology for5G network. VLC offers the unique advantages of unregulated and secure channels, free of EM interference. Comparedwith the LED-based VLC transmitter, laser-based photonic systems are promising for compact, droop-free, and high-speedwhite lighting and VLC applications, ideal for ultra-fast 5G network and beyond. Besides the potential for achieving highdata rate free-space communication links, i.e. the Li-Fi network, laser-based VLC technology can also enable underwaterwireless optical communications (UWOC) for many important applications.In this paper, the recent research progress and highlights in the fields of laser-based VLC and UWOC have been reviewedwith a focused discussion on the performance of various light sources, including the modulation characteristics of GaNbasededge emitting laser diodes (EELDs), superluminescent diodes (SLDs) and vertical-cavity surface-emitting lasers(VCSELs). Apart from the utilization of discrete components for building transceiver in VLC systems, the developmentof III-nitride laser-based photonic integration has been featured. Such on-chip integration offers many advantages,including having a small-footprint, high-speed, and low power consumption.Finally, we discuss the considerations of wavelength selection for various VLC and UWOC applications. Comparison ofinfrared (IR) and visible lasers for channels with high turbulence and the study of ultraviolet (UV) and visible lasers fornon-line-of-sight (NLOS) communications are presented.
机译:高速可见光通信(VLC)已被确定为\ r \ n5G网络通信技术的重要组成部分。 VLC提供不受管制和安全通道的独特优势,不受EM干扰。与基于LED的VLC发射器相比,基于激光的光子系统有望实现紧凑,无下垂和高速白光照明和VLC应用,非常适合超快速5G网络及以后的应用。除了实现高数据速率自由空间通信链路(即Li-Fi网络)的潜力外,基于激光的VLC技术还可以为许多重要应用实现水下\ r \ n无线光学通信(UWOC)。 n本文回顾了基于激光的VLC和UWOC领域的最新研究进展和重点\ r \ n,重点讨论了各种光源的性能,包括GaN基\ r \ nedge发射激光器的调制特性二极管(EELD),超发光二极管(SLD)和垂直腔表面发射激光器\ r \ n(VCSEL)。除了在VLC系统中利用分立组件来构建收发器外,基于III氮化物激光的光子集成技术也得到了发展。这样的片上集成具有许多优点,其中包括体积小,速度快和功耗低。\ r \ n最后,我们讨论了各种VLC和UWOC应用的波长选择注意事项。介绍了高湍流通道的红外和可见光激光器的比较,以及用于非视距(NLOS)通信的紫外和可见光激光器的研究。

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  • 来源
    《Novel In-Plane Semiconductor Lasers XVIII》|2019年|109390E.1-109390E.9|共9页
  • 会议地点 0277-786X;1996-756X
  • 作者单位

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534;

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534;

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534;

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534;

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534;

    Photonics Laboratory, King Abdullah University of Science and Technology (KAUST), 4700KAUST, Thuwal, Saudi Arabia 21534 boon.ooi@kaust.edu.sa, phone 966 12 808-4350;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 14:32:34

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