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基于拉丝塔光栅阵列的高分辨率光纤温度传感器。

High-Resolution Optical Fiber Temperature Sensor Based on Draw Tower Grating Array.

作者信息

Liu Hanjie, Zhou Ciming, Pang Yandong, Chen Xi, Xu Ye, Fan Dian

机构信息

School of Information Engineering, Wuhan University of Technology, Wuhan 430070, China.

National Engineering Research Center of Fiber Optic Sensing Technology and Networks, Wuhan 430070, China.

出版信息

Sensors (Basel). 2022 Apr 7;22(8):2846. doi: 10.3390/s22082846.

Abstract

Ocean temperature monitoring is of great significance to marine fishing, aquaculture, and marine operations. Traditional electric sensors lack the potential to multiplex several sensors, and may suffer from electromagnetic interference. Meanwhile, fiber Bragg grating-based sensors have the advantages of high sensitivity, possibility for large-scale multiplexing, and immunity to electromagnetic interference. In this paper, we propose a Fabry-Pérot (FP) interferometer based on the draw tower grating array and combine it with the phase measurement method for demonstration and testing. In the sensor system, two adjacent fiber Bragg gratings (FBGs) are used as mirrors and an optical fiber connects them, forming a sensor unit. The signal was detected through the compensation of the optical path difference via two-arm path differences in an unbalanced interferometer. The sensor is calibrated in the range of 36.00-36.50 °C, and back to 36.00 °C, in steps of 0.10 °C. A thermocouple (DW1222) is used as a reference. Experimental testing demonstrates that under the thermal loop, the temperature and phase can be approximated as a linear relationship, the Pearson square correlation coefficient is 0.9996, and the temperature sensitivity is -9846 rad/°C. To prove that our experimental device can achieve a higher temperature resolution, we measured the background noise of the system. The experimental results indicate that the order of magnitude of our system temperature resolution can reach 10 °C. Thus, we believe that the sensor system is promising for the application of ocean temperature detection, and owing to the ultraweak reflection characteristics of the FBG, this method provides the possibility for large-scale multiplexing of the system.

摘要

海洋温度监测对海洋捕捞、水产养殖及海上作业具有重要意义。传统的电传感器缺乏复用多个传感器的潜力,且可能受到电磁干扰。同时,基于光纤布拉格光栅的传感器具有灵敏度高、可大规模复用以及抗电磁干扰等优点。在本文中,我们提出了一种基于拉丝塔光栅阵列的法布里 - 珀罗(FP)干涉仪,并将其与相位测量方法相结合进行演示和测试。在该传感器系统中,两个相邻的光纤布拉格光栅(FBG)用作反射镜,并用一根光纤连接它们,形成一个传感器单元。通过不平衡干涉仪中两臂光程差对光程差进行补偿来检测信号。该传感器在36.00 - 36.50 °C范围内进行校准,然后以0.10 °C的步长回到36.00 °C。使用热电偶(DW1222)作为参考。实验测试表明,在热循环下,温度与相位可近似为线性关系,皮尔逊平方相关系数为0.9996,温度灵敏度为 -9846 rad/°C。为证明我们的实验装置能够实现更高的温度分辨率,我们测量了系统的背景噪声。实验结果表明,我们系统温度分辨率的量级可达10⁻⁴ °C。因此,我们认为该传感器系统在海洋温度检测应用方面具有前景,并且由于FBG的超弱反射特性,该方法为系统的大规模复用提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d746/9031345/3f5de65447cd/sensors-22-02846-g002.jpg

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