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光纤中的集成传感与通信

Integrated sensing and communication in an optical fibre.

作者信息

He Haijun, Jiang Lin, Pan Yan, Yi Anlin, Zou Xihua, Pan Wei, Willner Alan E, Fan Xinyu, He Zuyuan, Yan Lianshan

机构信息

Center for Information Photonics & Communications, School of Information Science and Technology, Southwest Jiaotong University, 611756, Chengdu, Sichuan, China.

Peng Cheng Laboratory, 518052, Shenzhen, China.

出版信息

Light Sci Appl. 2023 Jan 17;12(1):25. doi: 10.1038/s41377-022-01067-1.

Abstract

The integration of high-speed optical communication and distributed sensing could bring intelligent functionalities to ubiquitous optical fibre networks, such as urban structure imaging, ocean seismic detection, and safety monitoring of underground embedded pipelines. This work demonstrates a scheme of integrated sensing and communication in an optical fibre (ISAC-OF) using the same wavelength channel for simultaneous data transmission and distributed vibration sensing. The scheme not only extends the intelligent functionality for optical fibre communication system, but also improves its transmission performance. A periodic linear frequency modulation (LFM) light is generated to act as the optical carrier and sensing probe in PAM4 signal transmission and phase-sensitive optical time-domain reflectometry (Φ-OTDR), respectively. After a 24.5 km fibre transmission, the forward PAM4 signal and the carrier-correspondence Rayleigh backscattering signal are detected and demodulated. Experimental results show that the integrated solution achieves better transmission performance (~1.3 dB improvement) and a larger launching power (7 dB enhancement) at a 56 Gbit/s bit rate compared to a conventional PAM4 signal transmission. Meanwhile, a 4 m spatial resolution, 4.32-nε/[Formula: see text] strain resolution, and over 21 kHz frequency response for the vibration sensing are obtained. The proposed solution offers a new path to further explore the potential of existing or future fibre-optic networks by the convergence of data transmission and status sensing. In addition, such a scheme of using shared spectrum in communication and distributed optical fibre sensing may be used to measure non-linear parameters in coherent optical communications, offering possible benefits for data transmission.

摘要

高速光通信与分布式传感的融合可为无处不在的光纤网络带来智能功能,如城市结构成像、海洋地震探测以及地下埋地管道的安全监测。这项工作展示了一种光纤中的集成传感与通信方案(ISAC-OF),该方案使用相同波长通道同时进行数据传输和分布式振动传感。该方案不仅扩展了光纤通信系统的智能功能,还提高了其传输性能。分别产生一个周期性线性调频(LFM)光,在PAM4信号传输和相敏光时域反射仪(Φ-OTDR)中用作光载波和传感探头。经过24.5千米的光纤传输后,对正向PAM4信号和与载波对应的瑞利背向散射信号进行检测和解调。实验结果表明,与传统PAM4信号传输相比,该集成解决方案在56吉比特/秒比特率下实现了更好的传输性能(提高约1.3分贝)和更大的发射功率(增强7分贝)。同时,获得了4米的空间分辨率、4.32纳应变/[公式:见原文]的应变分辨率以及超过21千赫兹的振动传感频率响应。所提出的解决方案为通过数据传输与状态传感的融合进一步探索现有或未来光纤网络的潜力提供了一条新途径。此外,这种在通信和分布式光纤传感中使用共享频谱的方案可用于测量相干光通信中的非线性参数,为数据传输带来可能的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e42e/9845349/2b0617c0c511/41377_2022_1067_Fig1_HTML.jpg

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