Experimental Demonstration of Hybrid LED-LD Based UOWC Link
Author:
Affiliation:
1. Indian Institute of Technology Patna,Dept. of Electrical Engineering,India
2. Indian Institute of Technology Patna,Dept. of Computer Science and Engineering,India
3. DRDO,Naval Physical and Oceanographic Laboratory
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10164833/10164838/10165805.pdf?arnumber=10165805
Reference15 articles.
1. A Cost-Efficient Real-Time 25 Mb/s System for LED-UOWC: Design, Channel Coding, FPGA Implementation, and Characterization
2. AquaOptical: A lightweight device for high-rate long-range underwater point-to-point communication
3. Blue laser diode enables underwa-ter communication at 12.4 Gbps;wu;Scientific Reports,2017
4. Design and Implementation of more than 50m Real-Time Underwater Wireless Opti-cal Communication System;zhou;Journal of Lightwave Technology,2022
5. Full-fledged 10Base-T ethernet underwater optical wireless communication system;cossu;IEEE Journal on Selected Areas in Communications,2017
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