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用于基于375纳米激光的水下无线光通信的紫外到蓝光颜色转换闪烁光纤光接收器。

Ultraviolet-to-blue color-converting scintillating-fibers photoreceiver for 375-nm laser-based underwater wireless optical communication.

作者信息

Kang Chun Hong, Trichili Abderrahmen, Alkhazragi Omar, Zhang Huafan, Subedi Ram Chandra, Guo Yujian, Mitra Somak, Shen Chao, Roqan Iman S, Ng Tien Khee, Alouini Mohamed-Slim, Ooi Boon S

出版信息

Opt Express. 2019 Oct 14;27(21):30450-30461. doi: 10.1364/OE.27.030450.

Abstract

Underwater wireless optical communication (UWOC) can offer reliable and secure connectivity for enabling future internet-of-underwater-things (IoUT), owing to its unlicensed spectrum and high transmission speed. However, a critical bottleneck lies in the strict requirement of pointing, acquisition, and tracking (PAT), for effective recovery of modulated optical signals at the receiver end. A large-area, high bandwidth, and wide-angle-of-view photoreceiver is therefore crucial for establishing a high-speed yet reliable communication link under non-directional pointing in a turbulent underwater environment. In this work, we demonstrated a large-area, of up to a few tens of cm, photoreceiver design based on ultraviolet(UV)-to-blue color-converting plastic scintillating fibers, and yet offering high 3-dB bandwidth of up to 86.13 MHz. Tapping on the large modulation bandwidth, we demonstrated a high data rate of 250 Mbps at bit-error ratio (BER) of 2.2 × 10 using non-return-to-zero on-off keying (NRZ-OOK) pseudorandom binary sequence (PRBS) 2-1 data stream, a 375-nm laser-based communication link over the 1.15-m water channel. This proof-of-concept demonstration opens the pathway for revolutionizing the photodetection scheme in UWOC, and for non-line-of-sight (NLOS) free-space optical communication.

摘要

水下无线光通信(UWOC)由于其无需授权的频谱和高传输速度,可为实现未来的水下物联网(IoUT)提供可靠且安全的连接。然而,一个关键瓶颈在于对指向、捕获和跟踪(PAT)的严格要求,以便在接收端有效恢复调制光信号。因此,大面积、高带宽和宽视角的光接收器对于在湍流水下环境中的非定向指向情况下建立高速且可靠的通信链路至关重要。在这项工作中,我们展示了一种基于紫外(UV)到蓝光颜色转换塑料闪烁光纤的大面积光接收器设计,面积可达几十平方厘米,并且具有高达86.13 MHz的高3 dB带宽。利用大调制带宽,我们在误码率(BER)为2.2×10时,使用非归零开关键控(NRZ-OOK)伪随机二进制序列(PRBS)2-1数据流,在1.15米水通道上基于375纳米激光的通信链路上实现了250 Mbps的高数据速率。这一概念验证演示为彻底改变UWOC中的光电探测方案以及实现非视线(NLOS)自由空间光通信开辟了道路。

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