National Laboratory Astana, Laboratory of Biosensors and Bioinstruments, Astana 010000, Kazakhstan.
Department of Electrical and Computer Engineering, Nazarbayev University, Astana 010000, Kazakhstan.
Sensors (Basel). 2018 Jul 4;18(7):2147. doi: 10.3390/s18072147.
Fiber Bragg Gratings (FBGs) are one of the most popular technology within fiber-optic sensors, and they allow the measurement of mechanical, thermal, and physical parameters. In recent years, a strong emphasis has been placed on the fabrication and application of chirped FBGs (CFBGs), which are characterized by a non-uniform modulation of the refractive index within the core of an optical fiber. A CFBG behaves as a cascade of FBGs, each one reflecting a narrow spectrum that depends on temperature and/or strain. The key characteristic of CFBGs is that their reflection spectrum depends on the strain/temperature observed in each section of the grating; thus, they enable a short-length distributed sensing, whereas it is possible to detect spatially resolved variations of temperature or strain with resolution on the order of a millimeter over the grating length. Based on this premise, CFBGs have found important applications in healthcare, mechanical engineering, and shock waves analysis, among others. This work reviews the present and emerging trends in CFBG sensors, focusing on all aspects of the sensing element and outlining the application case scenarios for which CFBG sensors have been demonstrated.
光纤布拉格光栅(FBG)是光纤传感器中最受欢迎的技术之一,它可以测量机械、热和物理参数。近年来,人们强烈关注啁啾光纤布拉格光栅(CFBG)的制造和应用,其特点是光纤芯层中的折射率呈非均匀调制。CFBG 表现为光纤布拉格光栅的级联,每个光栅反射一个窄的光谱,该光谱取决于温度和/或应变。CFBG 的关键特征是其反射光谱取决于光栅各部分观察到的应变/温度;因此,它们能够实现短长度分布式传感,并且可以检测到沿光栅长度以毫米级分辨率的温度或应变的空间分辨变化。基于这一前提,CFBG 在医疗保健、机械工程和冲击波分析等领域有了重要的应用。这项工作综述了 CFBG 传感器的现状和新兴趋势,重点介绍了传感元件的各个方面,并概述了 CFBG 传感器已得到证明的应用案例场景。