Towards 250-m gigabits-per-second underwater wireless optical communication using a low-complexity ANN equalizer
Xiaohe Dong, Kuokuo Zhang, Caiming Sun, Jun Zhang, Aidong Zhang, and, Lijun Wang

TL;DR
This paper demonstrates a 1-Gbps underwater wireless optical communication system over 250 meters using a low-complexity ANN equalizer combined with linear equalization, marking the first such experimental achievement at this data rate and distance.
Contribution
It introduces a novel low-complexity ANN equalizer for UWOC, enabling 1-Gbps data transmission over 250 meters, surpassing previous data rate benchmarks.
Findings
Achieved 1 Gbps over 250 meters underwater
ANN equalizer outperforms Volterra and linear equalizers
Reduced BER below FEC limit at high data rate
Abstract
The breakthroughs of communication distance and data rate have been eagerly anticipated by scientists in the area of underwater wireless optical communication (UWOC), which is seriously limited by the obvious aquatic attenuation in underwater channel. High-power laser source and ultra-sensitive photodetector are straightforward to extend the UWOC distance. However, nonlinear impairments caused by bandwidth-limited high-power transmitter and sensitive receiver severely degrade the data rate of long-distance UWOC. In this paper, we develop a UWOC system using a high-power transmitter by beam combining of 8-channel cascaded laser diodes (LD) and a sensitive receiver by a silicon photomultiplier (SiPM). The combined linear equalizer and low-complexity Artificial Neural Network (ANN) equalizer are used to achieve 1-Gbps data transmission over a 250-m UWOC system. To the best of our…
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Taxonomy
TopicsOptical Wireless Communication Technologies · Underwater Vehicles and Communication Systems · Advanced Wireless Communication Technologies
