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基于超窄线宽激光的一氧化碳多参数检测研究

[Research on carbon monoxide multi-parameter detection based on ultra-narrow-linewidth laser].

作者信息

Chen Xiao, Sui Qing-Mei, Miao Fei, Jia Lei, Wang Jing, Jiang Ming-Shun

机构信息

School of Control Science and Engineering, Shandong University, Ji'nan 250061, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2011 Oct;31(10):2829-33.

Abstract

Through measuring and analyzing the infrared absorption spectrum of carbon monoxide, a kind of carbon monoxide multi-parameter detection system was designed based on the characteristics of ultra-narrow-linewidth laser and the spectrum scanning technology. A ultra-narrow-linewidth tunable semiconductor laser was utilized as light source and carbon monoxide temperature detection was achieved by measuring direct absorption spectra at different temperatures. According to temperature data and the principle of differential absorption concentration detection, carbon monoxide concentration and temperature were obtained simultaneously. With the spectrum scanning technology of ultra-narrow-linewidth laser, the spectra of carbon monoxide near the region of 6 354.179 and 6 383.09 cm(-1) at different temperatures were measured, and also analyzed and fitted by Voigt profile. Finally the experiments indicate that the temperature measurement relative error is less than 4% and relative temperature fluctuation is less than 3.5%; the concentration measurement relative error is less than 5%, and the minimum detectable carbon monoxide is 0.05%. The multi-parameter detecting system has advantages of high accuracy and good stability, and can be used in power transformer fault gases on-line monitoring in real time.

摘要

通过测量和分析一氧化碳的红外吸收光谱,基于超窄线宽激光的特性和光谱扫描技术设计了一种一氧化碳多参数检测系统。采用超窄线宽可调谐半导体激光器作为光源,通过测量不同温度下的直接吸收光谱实现一氧化碳温度检测。根据温度数据和差分吸收浓度检测原理,同时获得一氧化碳浓度和温度。利用超窄线宽激光的光谱扫描技术,测量了不同温度下6354.179和6383.09 cm(-1)附近区域的一氧化碳光谱,并采用洛伦兹线型进行分析和拟合。实验结果表明,温度测量相对误差小于4%,相对温度波动小于3.5%;浓度测量相对误差小于5%,一氧化碳最小检测限为0.05%。该多参数检测系统具有精度高、稳定性好的优点,可用于电力变压器故障气体的实时在线监测。

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