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基于C形腔结构的具有级联游标效应的光纤相对湿度和温度传感器。

Fiber optic relative humidity and temperature sensor with the cascaded Vernier effect based on the C-shaped cavity structure.

作者信息

Zhao Ke, Song Bojun, Ye Canjia, Jin Xuemei, Yu Changyuan, Zhou Guiyao, Pan Jingshun, Huang Xuguang

出版信息

Opt Express. 2024 Aug 12;32(17):29887-29901. doi: 10.1364/OE.534287.

Abstract

The water-absorbent sensing film, coated on the surface of traditional optical fiber humidity sensors, often suffers from detachment issues. In this paper, we present what we believe to be a new fiber-optic cascaded Fabry-Perot interferometer sensor for detecting relative humidity (RH) and temperature, without the need for sophisticated instrumentation. The sensing structure comprises two sections of single-mode optical fibers and a C-shaped cavity between them. The C-shaped cavity is created by grinding the side of a hollow-core fiber with fiber optic abrasive paper. The Vernier effect arises from the cascaded interaction between the C-shaped cavity filled with ultraviolet optical glue (NOA61) and the subsequent single-mode fiber pigtail. The sensor exhibits a high RH sensitivity of 0.248 nm/%RH (35-95%RH) and an RH resolution of up to 0.08%RH. It also has high-temperature sensitivities of -1.091 nm/°C (25 - 65°C). Furthermore, simultaneous measurement of RH and temperature is achieved by establishing a dual parameter matrix, and the sensor's response time and recovery time for RH and temperature are within 300s. Therefore, this work provides a simple and cost-effective manufacturing process and the proposed RH and temperature sensor features a compact size, strong environmental adaptability, and significant potential for practical applications.

摘要

涂覆在传统光纤湿度传感器表面的吸水传感膜经常出现脱落问题。在本文中,我们展示了一种我们认为新型的用于检测相对湿度(RH)和温度的光纤级联法布里 - 珀罗干涉仪传感器,无需复杂的仪器设备。传感结构由两段单模光纤以及它们之间的一个C形腔组成。C形腔是通过用光纤砂纸研磨空心光纤的侧面而形成的。游标效应源于填充有紫外光学胶(NOA61)的C形腔与随后的单模光纤尾纤之间的级联相互作用。该传感器在35 - 95%RH范围内表现出0.248 nm/%RH的高RH灵敏度以及高达0.08%RH的RH分辨率。它在25 - 65°C范围内还具有 -1.091 nm/°C的高温灵敏度。此外,通过建立双参数矩阵实现了对RH和温度的同时测量,并且该传感器对RH和温度的响应时间和恢复时间均在300s以内。因此,这项工作提供了一种简单且具有成本效益的制造工艺,所提出的RH和温度传感器具有尺寸紧凑、环境适应性强以及在实际应用中具有巨大潜力的特点。

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