光纤
电子工程
光纤通信
光通信
多模光纤
反射计
保偏光纤
光纤分路器
计算机科学
光纤传感器
光时域反射计
光学性能监测
光交叉连接
光学
电信
材料科学
时域
光电子学
工程类
波分复用
物理
波长
计算机视觉
作者
Yaxi Yan,Hua Zheng,Zhiyong Zhao,Changjian Guo,Xiong Wu,Junhui Hu,Xiaoming Tao,Chao Lü
标识
DOI:10.1109/jlt.2021.3057670
摘要
The development of optical fiber technology has facilitated the technological innovation in optical fiber communication and sensing systems over the past decades. Among all the fiber sensing technologies, distributed optical fiber sensing (DOFS) has attracted great research interests and has been extensively investigated. In optical fiber communication systems, optical parameters such as intensity, phase, polarization, or frequency are modulated to realize data transmission, while for DOFS they are employed to measure the distributed physical parameter variation along the sensing fiber. Due to the similarities shared by optical fiber communication systems and DOFS systems, optical communication techniques, including coherent detection, polarization diversity and multicarrier signaling have been widely used in the DOFS to improve the sensing performance. In this article, principles of coherent detection, polarization diversity and multicarrier signaling are introduced and their applications in phase sensitive optical time domain reflectometry and Brillouin optical time domain analyzer are reviewed. A newly proposed unidirectional forward transmission based DOFS is also presented.
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