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基于超窄带激光器扫描技术的气体检测研究
作者姓名:Chen X  Sui QM  Miao F  Wang J  Jiang MS
作者单位:山东大学控制科学与工程学院,山东济南,250061
摘    要:基于气体的差分吸收检测原理和超窄带半导体激光器的光谱扫描技术,设计了一种高精度分布式二氧化碳气体检测网络.系统采用超窄带可调谐半导体激光器作为光源,设计了新型气室结构,通过方波信号对光源光谱进行调制,消除了其他气体成分和灰尘颗粒的干扰,并结合空分复用技术,实现了二氧化碳的实时分布式检测.利用超窄带光谱扫描技术测得了不同...

关 键 词:扫描技术  超窄带光谱  二氧化碳吸收光谱  气体压强  分布式检测

Research on gas detection based on spectrum scanning techniques of ultra-narrow-bandwidth laser
Chen X,Sui QM,Miao F,Wang J,Jiang MS.Research on gas detection based on spectrum scanning techniques of ultra-narrow-bandwidth laser[J].Spectroscopy and Spectral Analysis,2011,31(8):2044-2048.
Authors:Chen Xiao  Sui Qing-Mei  Miao Fei  Wang Jing  Jiang Ming-Shun
Institution:School of Control Science Engineering, Shandong University, Ji'nan 250061, China. cx_012003@yahoo.com.cn
Abstract:Based on the basic principle of differential absorption detection and the spectrum scanning technology of ultra-narrow-bandwidth (UNB) laser, a kind of distributed carbon dioxide detection system with high precision was designed. An UNB laser was utilized as light source and a novel structure gas cell was also used in this system. By using the wavelength modulation technique and space division multiple access technique, the interference of other gas and dust was eliminated and the distributed detection of carbon dioxide was achieved. With the spectrum scanning technology of UNB laser, spectra of carbon dioxide near the region of 1 572.66 microm at different pressures were obtained which were also analyzed. Finally the experiments indicated that the minimum detectable carbon dioxide is 0.005% and the measurement relative error is less then 3%. The system dynamic response time is less than 8 s by filling a volume of carbon dioxide gas into the gas cell gradually.
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