Bai Qing, Wang Qinglin, Wang Dong, Wang Yu, Gao Yan, Zhang Hongjuan, Zhang Mingjiang, Jin Baoquan
Key Laboratory of Advanced Transducers and Intelligent Control Systems (Ministry of Education and Shanxi Province), Taiyuan University of Technology, Taiyuan 030024, China.
College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan 030024, China.
Sensors (Basel). 2019 Apr 18;19(8):1862. doi: 10.3390/s19081862.
In the past two decades Brillouin-based sensors have emerged as a newly-developed optical fiber sensing technology for distributed temperature and strain measurements. Among these, the Brillouin optical time domain reflectometer (BOTDR) has attracted more and more research attention, because of its exclusive advantages, including single-end access, simple system architecture, easy implementation and widespread field applications. It is realized mainly by injecting optical pulses into the fiber and detecting the Brillouin frequency shift (BFS), which is linearly related to the change of ambient temperature and axial strain of the sensing fiber. In this paper, the authors provide a review of new progress on performance improvement and applications of BOTDR in the last decade. Firstly, the recent advances in improving the performance of BOTDRs are summarized, such as spatial resolution, signal-to-noise ratio and measurement accuracy, measurement speed, cross sensitivity and other properties. Moreover, novel-type optical fibers bring new characteristics to optic fiber sensors, hence we introduce the different Brillouin sensing features of special fibers, mainly covering the plastic optical fiber, photonic crystal fiber, few-mode fiber and other special fibers. Additionally, we present a brief overview of BOTDR application scenarios in many industrial fields and intelligent perception, including structural health monitoring of large-range infrastructure, geological disaster prewarning and other applications. To conclude, we discuss several challenges and prospects in the future development of BOTDRs.
在过去二十年中,基于布里渊的传感器已成为一种新开发的用于分布式温度和应变测量的光纤传感技术。其中,布里渊光时域反射仪(BOTDR)因其独特优势,包括单端接入、系统架构简单、易于实现以及广泛的现场应用,而吸引了越来越多的研究关注。它主要通过向光纤注入光脉冲并检测布里渊频移(BFS)来实现,布里渊频移与传感光纤的环境温度和轴向应变的变化呈线性相关。在本文中,作者对过去十年BOTDR在性能提升和应用方面的新进展进行了综述。首先,总结了BOTDR在性能提升方面的最新进展,如空间分辨率、信噪比和测量精度、测量速度、交叉灵敏度等特性。此外,新型光纤为光纤传感器带来了新特性,因此我们介绍了特殊光纤的不同布里渊传感特性,主要涵盖塑料光纤、光子晶体光纤、少模光纤等特殊光纤。此外,我们简要概述了BOTDR在许多工业领域和智能感知中的应用场景,包括大范围基础设施的结构健康监测、地质灾害预警等应用。最后,我们讨论了BOTDR未来发展中的几个挑战和前景。