Leal-Junior Arnaldo, Frizera-Neto Anselmo, Marques Carlos, Pontes Maria José
Graduate Program of Electrical Engineering of Federal University of Espirito Santo, 29075-910 Vitória, Brazil.
Instituto de Telecomunicações, Campos Universitário de Santiago, 3810-193 Aveiro, Portugal.
Sensors (Basel). 2018 Mar 20;18(3):916. doi: 10.3390/s18030916.
This paper presents a system capable of measuring temperature and relative humidity with polymer optical fiber (POF) sensors. The sensors are based on variations of the Young's and shear moduli of the POF with variations in temperature and relative humidity. The system comprises two POFs, each with a predefined torsion stress that resulted in a variation in the fiber refractive index due to the stress-optic effect. Because there is a correlation between stress and material properties, the variation in temperature and humidity causes a variation in the fiber's stress, which leads to variations in the fiber refractive index. Only two photodiodes comprise the sensor interrogation, resulting in a simple and low-cost system capable of measuring humidity in the range of 5-97% and temperature in the range of 21-46 °C. The root mean squared errors (RMSEs) between the proposed sensors and the reference were 1.12 °C and 1.36% for the measurements of temperature and relative humidity, respectively. In addition, fiber etching resulted in a sensor with a 2 s response time for a relative humidity variation of 10%, which is one of the lowest recorded response times for intrinsic POF humidity sensors.
本文介绍了一种能够使用聚合物光纤(POF)传感器测量温度和相对湿度的系统。这些传感器基于POF的杨氏模量和剪切模量随温度和相对湿度的变化而变化。该系统由两根POF组成,每根都有一个预定义的扭转应力,由于应力光学效应,该应力会导致光纤折射率发生变化。由于应力与材料特性之间存在关联,温度和湿度的变化会导致光纤应力发生变化,进而导致光纤折射率发生变化。仅用两个光电二极管就构成了传感器询问装置,从而形成了一个简单且低成本的系统,该系统能够测量5-97%范围内的湿度以及21-46°C范围内的温度。在所提出的传感器与参考值之间,温度测量和相对湿度测量的均方根误差(RMSE)分别为1.12°C和1.36%。此外,光纤蚀刻产生了一种传感器,对于10%的相对湿度变化,其响应时间为2秒,这是固有POF湿度传感器记录的最低响应时间之一。