DocumentCode :
1762983
Title :
Improvement of Measurement Accuracy of Infrared Moisture Meter by Considering the Impact of Moisture Inside Optical Components
Author :
Cun Guang Zhu ; Jun Chang ; Peng Peng Wang ; Bo Ning Sun ; Qiang Wang ; Wei Wei ; Xiang Zhi Liu ; Sa Sa Zhang
Author_Institution :
Shandong Provincial Key Lab. of Laser Technol. & Applic., Shandong Univ., Jinan, China
Volume :
14
Issue :
3
fYear :
2014
fDate :
41699
Firstpage :
920
Lastpage :
925
Abstract :
The impact of moisture inside internal end-face gaps of optical components on the measurements quality of infrared moisture meter for sulfur hexafluoride (SF6) gas-insulated equipment (GIE) is explored. The distortion of observed absorption line shapes occurs when the background absorption spectrum of moisture existing inside internal end-face gaps of optical components at atmospheric pressure is superposed on the desired absorption spectrum of moisture in SF6 GIE where the pressure exceeds 1 atm. Errors that arise with the measurements of moisture concentration and pressure because of line shape distortion effects in infrared absorption spectroscopy are quantitatively analyzed. A correction algorithm is proposed for the dual-beam balanced ratiometric detector strategy to improve the measuring precision. This algorithm eliminates the line shape distortion effects caused by moisture inside optical components and conducts a successful moisture measurement and control program for SF6 GIE. In our experiments, the impacts of moisture inside optical components have been suppressed, and the mean absolute errors have been decreased by 86.0% and 76.1%, respectively.
Keywords :
atmospheric pressure; chemical variables measurement; infrared spectra; infrared spectroscopy; moisture measurement; organic compounds; pressure measurement; SF6 GIE; absorption line shape distortion effect; absorption spectrum; atmospheric pressure; background absorption spectrum; correction algorithm; dual-beam balanced ratiometric detector strategy; infrared absorption spectroscopy; infrared moisture meter measurement; internal end-face gap; moisture concentration measurement; optical component; pressure measurement; quantitatively analysis; sulfur hexafluoride gas-insulated equipment; Absorption; Laser beams; Moisture; Moisture measurement; Optical devices; Optical distortion; Pressure measurement; Infrared moisture meter; SF6 GIE; absorption spectrum; pressure measurement;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2013.2291033
Filename :
6670076
Link To Document :
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