A Low-Cost Relative Humidity Sensor Using Polymer Optical Fiber Based on Intensity Variation

相对湿度 材料科学 光纤传感器 光纤 灵敏度(控制系统) 检出限 强度(物理) 半径 折射率 湿度 光学 光强度 纤维 光电子学 电子工程 复合材料 化学 计算机科学 物理 色谱法 计算机安全 热力学 工程类
作者
Abdul Ghaffar,Sadam Hussain,Sayed Hyder Abbas Musavi,Mujahid Mehdi,N.U.H.H. Zalkepali,Jie Lin,Jianping Yu,Muhammad Chhattal,Kun Lan,Lei Cao
出处
期刊:IEEE Sensors Journal [IEEE Sensors Council]
卷期号:24 (6): 7816-7823 被引量:7
标识
DOI:10.1109/jsen.2023.3347890
摘要

In sensor systems, most sensors are single-point detection, and it is challenging to develop a multi-point sensor where multiple points can be sensed. This work reports a low-cost relative humidity (RH) sensor relying on intensity-variation based on the side coupling technique using polymer optical fiber, where three sensors are integrated into a single illuminating fiber. The sensor structure contains the twisting of two fiber three times and is coated with agarose-gel, while a rise in humidity causes change in refractive index (RI) between two twisted fibers. The experimental results reveal that the sensors provide a linear relationship between 20% to 80% RH with a sensitivity of 0.4636 μW/%, 0.4402 μW/%, and 0.4153 μW/%. Detection limits are 1.57%, 1.79%, and 2.02% for sensor-1, sensor-2, and sensor-3, respectively, while the bend radius of the sensor probe is 10 mm. When RH is increased from 80%, resulting in more sensitive as well as sensor’s sensitivity rises when the bend radius reduces. A lower detection limit and increased sensitivity are obtained with a coating of agarose-gel. In addition, the novel RH sensor is a cost-effective solution that offers the benefits of decent reversibility, rapid reaction time (about 1 sec), and temperature dependency.
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