School of Physics and Optoelectronic Engineering, Shandong University of Technology, Zibo 255049, China.
Sensors (Basel). 2020 Aug 12;20(16):4517. doi: 10.3390/s20164517.
In recent years, with the development of materials science and architectural art, ensuring the safety of modern buildings is the top priority while they are developing toward higher, lighter, and more unique trends. Structural health monitoring (SHM) is currently an extremely effective and vital safeguard measure. Because of the fiber-optic sensor's (FOS) inherent distinctive advantages (such as small size, lightweight, immunity to electromagnetic interference (EMI) and corrosion, and embedding capability), a significant number of innovative sensing systems have been exploited in the civil engineering for SHM used in projects (including buildings, bridges, tunnels, etc.). The purpose of this review article is devoted to presenting a summary of the basic principles of various fiber-optic sensors, classification and principles of FOS, typical and functional fiber-optic sensors (FOSs), and the practical application status of the FOS technology in SHM of civil infrastructure.
近年来,随着材料科学和建筑艺术的发展,在现代建筑向更高、更轻、更独特的趋势发展的同时,确保其安全性成为首要任务。结构健康监测 (SHM) 目前是一种极其有效和重要的保障措施。由于光纤传感器 (FOS) 具有独特的固有优势(如体积小、重量轻、抗电磁干扰 (EMI) 和腐蚀、嵌入能力),因此在土木工程中,许多创新的传感系统已被用于建筑物、桥梁、隧道等项目的 SHM。本文的目的是总结各种光纤传感器的基本原理、光纤传感器的分类和原理、典型和功能光纤传感器 (FOS) 以及光纤传感器技术在民用基础设施 SHM 中的实际应用现状。