DocumentCode
554304
Title
Improving accuracy of benzene detection based on optical atmospheric composition measurement technology
Author
Wenjun Li
Author_Institution
Bio-Incubator, Imperial Coll. London, London, UK
Volume
6
fYear
2011
fDate
12-14 Aug. 2011
Firstpage
3019
Lastpage
3023
Abstract
To improve the measurement accuracy in the optical measurement of benzene based on differential absorption technology, three key factors that affect the measurement results, namely, the difference of diode response, the noise in differentials and cross sections, are analyzed respectively and the solutions to reduce the adverse effect of the three factors, diode response correction, cross section smoothing and differential smoothing are introduced and described. The test results show that with the correction of diode response the measurement accuracy can be improved by around 1.5%. Noises in cross sections and differentials have relatively higher impact on the at lower concentration levels. At lower concentration levels, the measurement accuracy can be improved by as much as 30% with the smoothed cross sections, and the improvement of as high as 23% can be expected with the smoothed differentials. At higher concentration levels, the measurement accuracy can be improved by as 1% to 2% with the smoothed cross sections, and the improvement of 2% to 4% can be expected with the smoothed differentials. Generally speaking, the measures taken in this paper can improve the measurement accuracy of benzene dramatically.
Keywords
atmospheric optics; chemical variables measurement; diodes; optical noise; optical variables measurement; organic compounds; ultraviolet spectra; benzene detection; concentration measurement; differential absorption technology; differential smoothing; diode response correction; optical atmospheric composition measurement; Absorption; Accuracy; Filtering algorithms; Noise; Noise measurement; Optical variables measurement; Smoothing methods; benzene; cross section smoothing; differential smoothing; diode response; optical measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic and Mechanical Engineering and Information Technology (EMEIT), 2011 International Conference on
Conference_Location
Harbin, Heilongjiang
Print_ISBN
978-1-61284-087-1
Type
conf
DOI
10.1109/EMEIT.2011.6023045
Filename
6023045
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