Xu Jing, Song Yuhang, Yu Xiangyu, Lin Aobo, Kong Meiwei, Han Jun, Deng Ning
Opt Express. 2016 Apr 18;24(8):8097-109. doi: 10.1364/OE.24.008097.
We first study the transmission property of red light in water in terms of extinction coefficient and channel bandwidth via Monte Carlo simulation, with an interesting finding that red light outperforms blue-green light in highly turbid water. We further propose and experimentally demonstrate a broadband underwater wireless optical communication system based on a simple and cost-effective TO56 red-light laser diode. We demonstrate a 1.324-Gb/s transmission at a bit error rate (BER) of 2.02 × 10 over a 6-m underwater channel, by using 128-QAM OFDM signals and a low-cost 150-MHz positive-intrinsic-negative photodetector, with a record spectral efficiency higher than 7.32 bits/Hz. By using an avalanche photodetector and 32-QAM OFDM signals, we have achieved a record bit rate of 4.883 Gb/s at a BER of 3.20 × 10 over a 6-m underwater channel.
我们首先通过蒙特卡罗模拟从消光系数和信道带宽方面研究红光在水中的传输特性,有一个有趣的发现,即在高浑浊度水中红光的表现优于蓝绿光。我们进一步提出并通过实验证明了一种基于简单且经济高效的TO56红光激光二极管的宽带水下无线光通信系统。通过使用128-QAM OFDM信号和低成本的150-MHz正-本征-负光电探测器,我们在6米水下信道上实现了误码率为2.02×10时1.324 Gb/s的传输,创下了高于7.32比特/赫兹的频谱效率记录。通过使用雪崩光电探测器和32-QAM OFDM信号,我们在6米水下信道上实现了误码率为3.20×10时创纪录的4.883 Gb/s比特率。