DocumentCode
3519592
Title
High-speed Flame detector with the reduction of optical noise by the compensation method
Author
Lisakov, Sergey A. ; Pavlov, Andrey N. ; Sypin, Eugene V.
Author_Institution
Biysk Technol. Inst., Biysk, Russia
fYear
2015
fDate
June 29 2015-July 3 2015
Firstpage
297
Lastpage
301
Abstract
In the world various types multiband fame detectors are made. Requirements to such fame detectors constantly increase. High-speed (no more than 5 ms) fame detectors with the reduction of optical noise are required. Flame detectors are required which are possible to unite into a system. In the article the high-speed fame detector with the reduction of optical noise by the compensation method is described. Requirements to technical parameters of a fame detector are formulated. Features of application of a compensation method of optical noise reduction in the fame detector are analyzed. The choice of spectral ranges of reception of radiation by the fame detector on the data basis on spectral distribution of radiation of burning and radiation of optical noise is carried out. The working prototype of the fame detector is designed. Results of the work carried out are necessary for the further manufacturing of the working prototype of fame detector. The results received will allow to carry out the experimental research of the fame detector work.
Keywords
compensation; flames; interference suppression; optical noise; temperature sensors; burning radiation; compensation method; high-speed flame detector; optical noise reduction; radiation reception; spectral distribution; Combustion; Detectors; Electron devices; Fires; Nanoscale devices; Optical noise; Photodetectors; Flame detector; compensation method; emission spectra of fame; optical noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Micro/Nanotechnologies and Electron Devices (EDM), 2015 16th International Conference of Young Specialists on
Conference_Location
Erlagol
ISSN
2325-4173
Print_ISBN
978-1-4673-6718-9
Type
conf
DOI
10.1109/EDM.2015.7184548
Filename
7184548
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