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Acceleration test of substrate-packaged fiber Bragg grating sensor北大核心CSCD
引用本文:杜翠翠,孔德仁,徐春冬.Acceleration test of substrate-packaged fiber Bragg grating sensor北大核心CSCD[J].应用光学,2022,43(1):152-159.
作者姓名:杜翠翠  孔德仁  徐春冬
作者单位:南京理工大学 机械工程学院,江苏 南京 210014
基金项目:国家自然科学基金(11372143);国防科工局技术基础科研项目(995-14021006010401);江苏省自然科学基金(BK20190464)。
摘    要:To test whether the fiber Bragg grating (FBG) sensor can endure the steady-state inertial loads caused by the acceleration and the sensing properties during the loads, a FBG strain and temperature sensor with aluminium alloy substrate package was designed, and the acceleration performance on the sensor was tested. The sizes of FBG strain and temperature sensor were designed and its package process was described. The strain and temperature sensing mechanisms of FBG sensor were analyzed, and the spectrum detection and demodulation system based on volume phase grating and linear array photodetector was developed. Finally, the acceleration test equipment was established, and the acceleration performance test of the selected FBG strain and temperature sensor was carried out in accordance with the requirements and methods of GJB150.15A acceleration test. The experimental results show that in the 2 min performance test before and after the acceleration test, the wavelength offset is below to ±50 pm, and the change of light intensity is below to 0.3 V. In acceleration test, the maximum fluctuation of wavelength offset is ±7 pm, and the light intensity is in the range of 1.3 V~4.003 V. It is proved that the designed FBG sensor has the ability to endure the acceleration loads and has the good sensing performance during the acceleration loads. Copyright ©2022 Journal of Applied Optics. All rights reserved.

关 键 词:基片式光纤光栅传感器    铝合金封装    波长解调技术    GJB150.15A“加速度试验”
收稿时间:2021-09-02

Acceleration test of substrate-packaged fiber Bragg grating sensor
DU Cuicui,KONG Deren,XU Chundong.Acceleration test of substrate-packaged fiber Bragg grating sensor[J].Journal of Applied Optics,2022,43(1):152-159.
Authors:DU Cuicui  KONG Deren  XU Chundong
Institution:School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210014, China
Abstract:To test whether the fiber Bragg grating (FBG) sensor can endure the steady-state inertial loads caused by the acceleration and the sensing properties during the loads, a FBG strain and temperature sensor with aluminium alloy substrate package was designed, and the acceleration performance on the sensor was tested. The sizes of FBG strain and temperature sensor were designed and its package process was described. The strain and temperature sensing mechanisms of FBG sensor were analyzed, and the spectrum detection and demodulation system based on volume phase grating and linear array photodetector was developed. Finally, the acceleration test equipment was established, and the acceleration performance test of the selected FBG strain and temperature sensor was carried out in accordance with the requirements and methods of GJB150.15A acceleration test. The experimental results show that in the 2 min performance test before and after the acceleration test, the wavelength offset is below to ±50 pm, and the change of light intensity is below to 0.3 V. In acceleration test, the maximum fluctuation of wavelength offset is ±7 pm, and the light intensity is in the range of 1.3 V~4.003 V. It is proved that the designed FBG sensor has the ability to endure the acceleration loads and has the good sensing performance during the acceleration loads.
Keywords:substrate-packaged fiber Bragg grating sensor  aluminium alloy package  wavelength demodulation technology  GJB150  15A acceleration test
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