DocumentCode :
29105
Title :
Analysis of Random Noise and Long-Term Drift for Tunable Diode Laser Absorption Spectroscopy System at Atmospheric Pressure
Author :
Guojie Tu ; Fengzhong Dong ; Yu Wang ; Culshaw, Brian ; Zhirong Zhang ; Tao Pang ; Hua Xia ; Bian Wu
Author_Institution :
Inst. of Opt. Commun. Eng., Nanjing Univ., Nanjing, China
Volume :
15
Issue :
6
fYear :
2015
fDate :
Jun-15
Firstpage :
3535
Lastpage :
3542
Abstract :
The random noise and the slow drift, which respectively limit the signal-to-noise ratio and the long-term stability, of a wavelength modulated tunable diode laser absorption spectroscopy system, are critically analyzed and evaluated experimentally. The noise sources considered in detail include the noise contributions from the lock-in amplifier, detector-preamplifier combination noise, excess noise from the DFB laser, and detection cell instabilities, especially in multiple reflection long-path cells. We also analyze contributions to long-term drift and find that the drift may be significantly compensated by the use of an optical reference path. We find experimentally that a white cell with a path length of 17.5 m introduces excess noise resulting in its having a performance equivalent to 6-m single pass absorption path. The experimental system optimized using the results of this analysis and using the 17.5-m white cell is found to operate at a sensitivity of 1.5-ppmv carbon monoxide in a bandwidth of 4 Hz. The long-term zero offset drift levels measured over 8 h are found to be ~120 ppmv without the reference optical path and are reduced to 20 ppmv using the balance path technique.
Keywords :
carbon compounds; distributed feedback lasers; gas sensors; laser tuning; measurement by laser beam; random noise; semiconductor lasers; CO; DFB laser; atmospheric pressure; bandwidth 4 Hz; detection cell instabilities; detector- preamplifier combination noise; excess noise; lock-in amplifier; long-term drift; multiple reflection long-path cells; noise contributions; optical reference path; random noise; signal-to-noise ratio; slow drift; tunable diode laser absorption spectroscopy system; Noise; Optical distortion; Optical fiber sensors; Optical fibers; Optical reflection; Remote sensing; gas absorption spectroscopy; noise analysis; remote sensing; stability analysis;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2015.2393861
Filename :
7015582
Link To Document :
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