Zhang Yunshan, Zhang Yulin, Hu Xiafen, Wu Dan, Fan Li, Wang Zhaokui, Kong Linxing
School of Aerospace Engineering, Tsinghua University, Beijing 100084, China.
System Design Institute of Hubei Aerospace Technology Academy, Wuhan 430040, China.
Sensors (Basel). 2022 Apr 14;22(8):3007. doi: 10.3390/s22083007.
A high-resolution and high-sensitivity fiber optic sensor based on the quasi-linear distribution of the core refractive index is designed and fabricated, which enables decouple measurement of bending and of temperature. First, single-mode fiber doped with AlO, YO, and PO was drawn through a fiber drawing tower. The fiber grating was engraved on the fiber by a femtosecond laser. Modeling analysis was conducted from quantum theory. Experimental results show that the bending sensitivity of the grating can reach 21.85 dB/m, which is larger than the reported sensitivity of similar sensors. In the high temperature range from room temperature to 1000 °C, the temperature sensitivity was 14.1 pm/°C. The doped grating sensor can achieve high temperature measurement without annealing, and it has a distinguished linear response from low temperature to high temperature. The bending resolution can reach 0.0004 m, and the temperature resolution can reach 0.007 °C. Two-parameter decoupling measurement can be realized according to the distinctive characteristic trends of the spectrum. What's more, the sensor exhibits excellent stability and a fast response time.
设计并制作了一种基于纤芯折射率准线性分布的高分辨率、高灵敏度光纤传感器,该传感器能够实现弯曲和温度的解耦测量。首先,通过拉丝塔拉制掺杂了AlO、YO和PO的单模光纤。用飞秒激光在光纤上刻写光纤光栅。从量子理论进行了建模分析。实验结果表明,该光栅的弯曲灵敏度可达21.85 dB/m,大于已报道的类似传感器的灵敏度。在从室温到1000℃的高温范围内,温度灵敏度为14.1 pm/℃。掺杂光栅传感器无需退火即可实现高温测量,并且从低温到高温具有显著的线性响应。弯曲分辨率可达0.0004 m,温度分辨率可达0.007℃。根据光谱的独特特征趋势可实现双参数解耦测量。此外,该传感器具有出色的稳定性和快速的响应时间。