ZHU Gaofeng, ZHU Hongqiu, YANG Chunhua, et al., “Parameter Optimization of a Short Open Optical Path's Oxygen Concentration Detection System Based on WMS,” Chinese Journal of Electronics, vol. 26, no. 4, pp. 797-802, 2017, doi: 10.1049/cje.2017.06.011
Citation: ZHU Gaofeng, ZHU Hongqiu, YANG Chunhua, et al., “Parameter Optimization of a Short Open Optical Path's Oxygen Concentration Detection System Based on WMS,” Chinese Journal of Electronics, vol. 26, no. 4, pp. 797-802, 2017, doi: 10.1049/cje.2017.06.011

Parameter Optimization of a Short Open Optical Path's Oxygen Concentration Detection System Based on WMS

doi: 10.1049/cje.2017.06.011
Funds:  This work is supported by the State Key Program of National Natural Science of China (No.61533021), the Foundation for Innovative Research Groups of the National Natural Science Foundation of China (No.61621062), Scientific Research Fund of Hunan Provincial Education Department (No.17A109), and innovation-driven plan in Central South University and key discipline of Hunan Province.
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  • Corresponding author: ZHU Hongqiu (corresponding author) was born in 1970. He received the Ph.D. degree in control science and control engineering from Central South University and is an associate professor of automation. His research interests include in photoelectric detection technology and computer cortrol technology. (Email:csuzhq@163.com)
  • Received Date: 2016-03-29
  • Rev Recd Date: 2016-08-08
  • Publish Date: 2017-07-10
  • In Wavelength modulation spectroscopy (WMS) system with a short open optical path to detect the oxygen concentration, the system parameter optimization is the preconditions for the accurate inversion of oxygen concentration. Absorption spectroscopy parameters of oxygen were obtained from the HIRTAN database, and the optimal center wavelength and its wavelength offset were confirmed. The laser's working temperature and direct current were determined according to the absorption peak position of photoelectric detection. Modulation parameters and time constant of lock-in amplifier were determined by analyzing intensity and standard deviation of the second harmonic signal. This method has been applied to detect the oxygen concentration in a glass vial, and the results indicate that the linear correlation coefficient of concentration and the second harmonic intensity is 0.9950. The resolution and stability of the detection system have been improved and it can meet the requirements of industrial field.
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