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使用写入保偏光子晶体光纤的长周期光纤光栅同时测量应变和温度

Simultaneous Measurement of Strain and Temperature Using Long-Period Fiber Grating Written on Polarization-Maintaining Photonic Crystal Fiber.

作者信息

Kim Do Kyung, Kim Jihoon, Lee Seul-Lee, Choi Sungwook, Jeong Sun Jae, Kim Min Seok, Lee Yong Wook

机构信息

Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.

School of Electrical Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.

出版信息

J Nanosci Nanotechnol. 2020 Jan 1;20(1):257-262. doi: 10.1166/jnn.2020.17231.

Abstract

Here we propose a novel optical fiber sensor capable of simultaneous measurement of strain and temperature by utilizing a long-period fiber grating (LPFG) inscribed on polarization-maintaining photonic crystal fiber (PMPCF) as a sensor head. The sensor head was fabricated by irradiating CO₂ laser pulses to one side of PMPCF with line-by-line technique. The LPFG written on PMPCF (referred to as the PMPC-LPFG) exhibits two different wavelength-dependent loss bands, obtained at two orthogonal input polarization states. For two resonance wavelengths of these two wavelength-dependent loss bands, designated as Dips A and B, strain and temperature responses were investigated in a strain range of 0 to 2058 with a step of 98 and a temperature range of 30 to 85 °C with a step of 5 °C. Strain sensitivities of Dips A and B were measured and found to be approximately -0.82 and -1.43 pm/, respectively, at room temperature (25 °C). Similarly, temperature sensitivities of Dips A and B were measured and found to be ~7.89 and ~4.76 pm/°C without applied strain (0 ), respectively. Owing to their linear and independent responses to strain and temperature, strain and temperature changes applied to the PMPC-LPFG can be simultaneously estimated from the measured wavelength shifts of the two resonance dips (Dips A and B) using their premeasured strain and temperature sensitivities. The experimental results prove that the PMPC-LPFG can be used as a sensor head for simultaneous measurement of strain and temperature.

摘要

在此,我们提出一种新型光纤传感器,该传感器能够通过利用刻写在保偏光子晶体光纤(PMPCF)上的长周期光纤光栅(LPFG)作为传感头来同时测量应变和温度。传感头是通过采用逐行技术将二氧化碳激光脉冲照射到PMPCF的一侧而制成的。写在PMPCF上的LPFG(称为PMPC-LPFG)在两个正交输入偏振态下呈现出两个不同的波长相关损耗带。对于这两个波长相关损耗带的两个共振波长,分别指定为凹陷A和凹陷B,在0至2058 με的应变范围内以98 με的步长以及在30至85°C的温度范围内以5°C的步长研究了应变和温度响应。在室温(25°C)下测量了凹陷A和凹陷B的应变灵敏度,发现分别约为-0.82和-1.43 pm/με。类似地,在无施加应变(0 με)的情况下测量了凹陷A和凹陷B的温度灵敏度,发现分别约为7.89和4.76 pm/°C。由于它们对应变和温度具有线性且独立的响应,因此可以利用预先测量的应变和温度灵敏度,根据两个共振凹陷(凹陷A和凹陷B)的测量波长偏移来同时估计施加到PMPC-LPFG上的应变和温度变化。实验结果证明,PMPC-LPFG可作为用于同时测量应变和温度的传感头。

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