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基于反谐振效应与多模干涉级联的曲率和温度测量光纤传感器。

Optical Fiber Sensor for Curvature and Temperature Measurement Based on Anti-Resonant Effect Cascaded with Multimode Interference.

作者信息

Gui Yinqiu, Shu Qian, Lu Ping, Peng Jiajun, Zhang Jiangshan, Liu Deming

机构信息

Wuhan National Laboratory for Optoelectronics (WNLO) and National Engineering Laboratory for Next Generation Internet Access System, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China.

Shenzhen Huazhong University of Science and Technology Research Institute, Shenzhen 518057, China.

出版信息

Sensors (Basel). 2022 Nov 3;22(21):8457. doi: 10.3390/s22218457.

Abstract

In this paper, a novel inline optical fiber sensor for curvature and temperature measurement simultaneously has been proposed and demonstrated, which can measure two parameters with very little crosstalk. Two combinational mechanisms of anti-resonant reflecting optical waveguide and inline Mach-Zehnder interference structure are integrated into a 3 mm-long single hole twin suspended core fiber (SHTSCF). The 85 μm hole core gives periodic several dominant resonant wavelengths in the optical transmission spectrum, acting as the anti-resonant reflecting optical waveguide (ARROW). The modes in two suspended cores and the cladding form the comb pattern. Reliable sensor sensitivity can be obtained by effective experiments and demodulation. Through intensity demodulation of the selected dip of Gaussian fitting, the curvature sensitivity can be up to -7.23 dB/m. Through tracking the MZI dip for wavelength demodulation, the temperature sensitivity can be up to 28.8 pm/°C. The sensor is simple in structure, compact, and has good response, which can have a bright application in a complex environment.

摘要

本文提出并演示了一种新型的可同时测量曲率和温度的内嵌式光纤传感器,该传感器能够在串扰极小的情况下测量两个参数。抗谐振反射光波导和内嵌式马赫-曾德尔干涉结构这两种组合机制被集成到一根3毫米长的单孔双悬芯光纤(SHTSCF)中。直径85微米的孔芯在光传输光谱中给出几个周期性的主导谐振波长,起到抗谐振反射光波导(ARROW)的作用。两个悬芯和包层中的模式形成梳状图案。通过有效的实验和解调可以获得可靠的传感器灵敏度。通过对高斯拟合所选凹陷进行强度解调,曲率灵敏度可达-7.23 dB/m。通过跟踪MZI凹陷进行波长解调,温度灵敏度可达28.8 pm/°C。该传感器结构简单、紧凑,响应良好,在复杂环境中具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0360/9658890/8787287601ea/sensors-22-08457-g001.jpg

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