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用于同时测量角度和温度的基于聚合物光纤的传感器系统。

Polymer-optical-fiber-based sensor system for simultaneous measurement of angle and temperature.

作者信息

Leal-Junior Arnaldo, Frizera Anselmo, Marques Carlos, José Pontes Maria

出版信息

Appl Opt. 2018 Mar 1;57(7):1717-1723. doi: 10.1364/AO.57.001717.

Abstract

This paper presents a polymer-optical-fiber (POF)-based sensor system for simultaneous measurement of angle and temperature. The main contribution is obtaining a sensor with higher temperature sensitivity and lower hysteresis on the angle measurements. The annealing was made on the fibers under the conditions of low relative humidity and under water, and a third set of samples without any heat treatment was applied for comparison with the annealed ones. Results of temperature and angle characterization show that the fibers annealed under water presented higher temperature sensitivity and lower errors when compared with the fibers annealed with low humidity or the fibers without annealing. Furthermore, the fibers annealed under water also presented lower hysteresis on the angle characterization. For these reasons, such fibers were employed for the temperature and angle measurements, which results in a sensor system capable of simultaneously measuring the angle and temperature with root-mean-squared error of 0.82°C for temperature and 2.20° for angle, which is further reduced to 1.20° after the application of a dynamic compensation technique for POF curvature sensors.

摘要

本文提出了一种基于聚合物光纤(POF)的传感器系统,用于同时测量角度和温度。主要贡献在于获得一种在角度测量方面具有更高温度灵敏度和更低滞后现象的传感器。在低相对湿度条件下和水下对光纤进行退火处理,并设置第三组未经任何热处理的样品与退火样品进行比较。温度和角度表征结果表明,与在低湿度下退火的光纤或未退火的光纤相比,在水下退火的光纤呈现出更高的温度灵敏度和更低的误差。此外,在水下退火的光纤在角度表征方面也具有更低的滞后现象。基于这些原因,采用此类光纤进行温度和角度测量,从而得到一个能够同时测量角度和温度的传感器系统,其温度测量的均方根误差为0.82°C,角度测量的均方根误差为2.20°,在对POF曲率传感器应用动态补偿技术后,角度测量的均方根误差进一步降至1.20°。

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