Talataisong Wanvisa, Ismaeel Rand, Brambilla Gilberto
Optoelectronics Research Centre, University of Southampton, Southampton SO17 1BJ, UK.
Sensors (Basel). 2018 Feb 4;18(2):461. doi: 10.3390/s18020461.
Optical microfiber-based temperature sensors have been proposed for many applications in a variety of industrial uses, including biomedical, geological, automotive, and defense applications. This increasing demand for these micrometric devices is attributed to their large dynamic range, high sensitivity, fast-response, compactness and robustness. Additionally, they can perform in-situ measurements remotely and in harsh environments. This paper presents an overview of optical microfibers, with a focus on their applications in temperature sensing. This review broadly divides microfiber-based temperature sensors into two categories: resonant and non-resonant microfiber sensors. While the former includes microfiber loop, knot and coil resonators, the latter comprises sensors based on functionally coated/doped microfibers, microfiber couplers, optical gratings and interferometers. In the conclusions, a summary of reported performances is presented.
基于光学微纤维的温度传感器已被提出用于多种工业用途的众多应用中,包括生物医学、地质、汽车和国防应用。对这些微米级设备的需求不断增加,这归因于它们的大动态范围、高灵敏度、快速响应、紧凑性和坚固性。此外,它们可以在恶劣环境中进行远程原位测量。本文概述了光学微纤维,重点介绍了它们在温度传感中的应用。本综述大致将基于微纤维的温度传感器分为两类:谐振式和非谐振式微纤维传感器。前者包括微纤维环、结和线圈谐振器,后者包括基于功能涂层/掺杂微纤维、微纤维耦合器、光栅和干涉仪的传感器。在结论部分,给出了所报道性能的总结。