Qiu Pengjiang, Cui Ganggang, Qian Zeyuan, Zhu Shijie, Shan Xinyi, Zhao Zhuoqun, Zhou Xiaoli, Cui Xugao, Tian Pengfei
Opt Express. 2021 Apr 26;29(9):14163-14173. doi: 10.1364/OE.427153.
Fog has a strong attenuation effect on the optical channel, which will greatly degrade the performance of visible light communication (VLC). Studying the effect of the fog on communication performance is crucial to realize outdoor VLC for next generation networks, but there is little research on this topic. In this work, the transmission characteristics of visible light band in the foggy channel were measured and a high-speed VLC system based on a 450 nm blue laser diode (LD) and 16-ary quadrature amplitude modulation orthogonal frequency division multiplexing (16-QAM-OFDM) in the artificial fog environment was demonstrated experimentally. Through a foggy channel of 60 cm, a maximum data rate of up to 4 Gbps was achieved at the pass loss of 13.06 dB with a bit error rate (BER) of 3.5 × 10 below the forward error correction (FEC) limit (3.8 × 10), which was the highest data rate ever reported for VLC in the foggy channel. Even at a higher pass loss of 17.32 dB, the proposed system still could achieve a data rate of 2.84 Gbps with a BER of 2.8 × 10. Further extending the distance to 16.9 m for a more practical application, a data rate of 2.0 Gbps was also demonstrated successfully.
雾对光通信信道具有很强的衰减作用,这将极大地降低可见光通信(VLC)的性能。研究雾对通信性能的影响对于实现下一代网络的户外可见光通信至关重要,但目前针对该主题的研究较少。在这项工作中,测量了雾信道中可见光波段的传输特性,并在人工雾环境中实验演示了基于450 nm蓝光激光二极管(LD)和16进制正交幅度调制正交频分复用(16-QAM-OFDM)的高速VLC系统。通过60 cm的雾信道,在13.06 dB的传输损耗下实现了高达4 Gbps的最大数据速率,误码率(BER)为3.5×10,低于前向纠错(FEC)极限(3.8×10),这是雾信道中可见光通信所报道过的最高数据速率。即使在17.32 dB的更高传输损耗下,所提出的系统仍能实现2.84 Gbps的数据速率,误码率为2.8×10。为了更实际的应用将距离进一步延长至16.9 m,也成功演示了2.0 Gbps的数据速率。