激光杂志2024,Vol.45Issue(7) :205-209.DOI:10.14016/j.cnki.jgzz.2024.07.205

高速精确的光纤光栅信号解调方案设计

Design of high speed and accurate fiber bragg grating signal demodulation scheme

张伟 周丽
激光杂志2024,Vol.45Issue(7) :205-209.DOI:10.14016/j.cnki.jgzz.2024.07.205

高速精确的光纤光栅信号解调方案设计

Design of high speed and accurate fiber bragg grating signal demodulation scheme

张伟 1周丽1
扫码查看

作者信息

  • 1. 淮阴工学院,江苏淮阴 223200
  • 折叠

摘要

为提升光纤光栅的应用效果,为此,设计高速精确的光纤光栅信号解调方案.依据LPFG的光纤光栅信号解调原理,设计两个LPFG双边缘滤波器处理两路反射光,并且利用光电探测器探测光功率结果,以此解调光栅的中心波长;采用光纤干涉仪检测解调频率,对其进行正反扫描,依据光传播时延引起的解调误差和解调频率扫描方向之间的关联,完成解调结果补偿.测试结果显示:该方案具有较好可行性,光谱发生不同程度重叠时,光纤光栅信号的解调结果标准差均小于1.85 pm;光栅波长的解调误差均在-5~5 pm之间;有效降低解调误差,提升光纤光栅解调精度,可靠获取信号中的信息.

Abstract

In order to improve the application effect of fiber grating,a high-speed and accurate fiber grating signal demodulation scheme is designed.According to the demodulation principle of LPFG fiber grating signal,two LPFG double-edge filters are designed to process the two reflected light,and the photodetector is used to detect the optical power result,so as to demodulate the central wavelength of the grating.The optical fiber interferometer is used to de-tect the demodulation frequency and perform positive and negative scanning.The demodulation result is compensated according to the correlation between the demodulation error caused by optical propagation delay and the scanning direc-tion of demodulation frequency.The test results show that the scheme has good feasibility.The standard deviation of demodulation results of FBG signals is less than 1.85pm when the spectrum overlaps in different degrees.The demodu-lation error of grating wavelength is between-5~5pm.Effectively reduce the demodulation error,improve the demod-ulation accuracy of fiber grating,and obtain the information in the signal reliably.

关键词

高速精确/光纤光栅/信号解调/光功率/中心波长/解调频率/误差补偿/光谱重叠

Key words

high speed and precision/fiber bragg grating/signal demodulation/optical power/center wave-length/demodulation frequency/error compensation/spectral overlap

引用本文复制引用

基金项目

国家重点研发计划(2018YFB1004904)

江苏省高校自然科学研究重大项目(18KJA520001)

出版年

2024
激光杂志
重庆市光学机械研究所

激光杂志

CSTPCD北大核心
影响因子:0.74
ISSN:0253-2743
浏览量1
段落导航相关论文