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基于光纤感知的盐深传感系统设计

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为了同时检测盐度与深度,并且抑制温度对测试的交叉敏感问题,设计了一种基于不同封装光纤传感器联用的盐深传感系统.三种不同封装形式的光纤传感器通过光纤串联实现盐度深度温度的同时测量与解算.构建了盐度和深度的反演模型,分析了温度补偿的可行性.实验分别针对盐度、深度及温度的变化进行了测试.结果显示,在0~50 g/L的盐度测试中,系统灵敏度均值为128.7 pm·g-1·L-1,主峰与盐度变化的第一个主峰波长偏移的变化线性度为0.9654.在1~15 cm的深度测试中,随深度变化的平均波长偏移量为751.9 pm/cm,线性度为0.9931;在23~45 ℃的温度测试中,三个光纤传感器的温度响应基本一致,在采用FBG2的测试数据进行温度补偿后,LPG和FBG1的波长偏差仅有±10 pm.
Design of salt depth sensing system based on fiber optic sensing
To simultaneously detect salinity and depth without temperature interference,a salt depth sensing system based on different packaged fiber sensors was designed.Three different packaging forms of fiber sensors are connected in series to achieve calculation of salinity depth and temperature.Constructed inversion models for salinity and depth,and analyzed the feasibility temperature compensation.The experiment tested the changes in salinity,depth,and tem-perature separately.The results showed that in the salinity test of 0~50 g/L,the average sensitivity of the system was 128.7pm·g-1·L-1,and the linearity of the wavelength shift between the main peak and the first main peak of sa-linity change was 0.9654.In the depth test of 1~15 cm,the average wavelength shift with depth is 751.9 pm/cm,and the linearity is 0.9931;In the temperature test of 23~45 ℃,the temperature response of the three fiber optic sensors was basically consistent.After temperature compensation using FBG2 test data,the wavelength deviation of LPG and FBG1 was only±10 pm.

fiber optic sensingsalinity detectiondeep detectioncross sensitivitytemperature compensation

梁芳、廖建军、荀燕琴、付建梅

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海南大学电子科学与技术学院,海南海口 570228

忻州师范学院电子系,山西忻州 034000

海南大学环境科学与工程学院,海南海口 570228

光纤传感 盐度检测 深度检测 交叉敏感 温度补偿

2024

激光与红外
华北光电技术研究所

激光与红外

CSTPCD北大核心
影响因子:0.723
ISSN:1001-5078
年,卷(期):2024.54(11)