A novel application of temperature monitoring using an optical fiber sensor based on time offset

A. Zrelli, Tahar Ezzeddine
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引用次数: 1

Abstract

High response rate and sensitivity are the crucial performance parameters for optical fiber temperature sensors and are fundamental in the study of optical fiber sensing. Considering that the traditional optical fiber sensing system cannot meet high response rate and sensitivity simultaneously, in this paper we present the design of an optical fiber temperature measurement method to achieve real-time temperature sensing with high resolution. The measurement system is made up of single-mode optical fiber and a picosecond laser. A combination of time offset measurement and the differential calculation method is used to extract the temperature information in the optical fiber, and the relationship between temperature changes and the time offset in the optical fiber is established. The novel optical fiber temperature measurement system based on time offset has been proved to provide an effective way to measure temperature. Experimental results show that the nonlinearity of the optical fiber temperature sensor can reach 99.5%, the response time was in the range of picoseconds, and the resolution of the sensor was approximately 0.05mT, thus the output of the sensor is accurate enough to meet the requirement for real-time measurement of temperature around the optical fiber. The proposed idea of the optical fiber temperature sensing system based on time offset and differential technology is new. The results of this paper prove that the kind of optical fiber sensor based on time offset has effective features and is precise enough for temperature monitoring in real situations.
基于时间偏移的光纤传感器在温度监测中的新应用
高响应速率和高灵敏度是光纤温度传感器的关键性能参数,是光纤传感研究的基础。针对传统光纤传感系统不能同时满足高响应速率和高灵敏度的问题,本文设计了一种光纤测温方法,以实现高分辨率的实时温度传感。该测量系统由单模光纤和皮秒激光器组成。采用时间偏移量测量与差分计算相结合的方法提取光纤中的温度信息,建立了光纤中温度变化与时间偏移量的关系。实验证明,基于时间偏移的光纤测温系统是一种有效的温度测量方法。实验结果表明,光纤温度传感器的非线性可达99.5%,响应时间在皮秒范围内,传感器的分辨率约为0.05mT,输出精度足以满足光纤周围温度实时测量的要求。提出了基于时间偏移和差分技术的光纤温度传感系统的新思路。本文的研究结果证明,这种基于时间偏移的光纤传感器具有有效的特点,能够满足实际情况下的温度监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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