ISSN 0021-3454 (print version)
ISSN 2500-0381 (online version)
Menu

10
Issue
vol 67 / October, 2024
Article

DOI 10.17586/0021-3454-2020-63-3-237-241

UDC 681.2.084, 681.2.089

An Installation for Studying Optoelectronic Humidity Sensor

N. Umaraliyev
Tashkent University of Information Technologies, Fergana Branch, Department of Telecommunication and Engineering;


M. M. Matbabayev
Fergana Polytechnic Institute, Department of Electrical Engineering, Electromechanics, and Electrotechnology ;


K. M. Ergashev
Fergana Polytechnic Institute, Department of Metrology, Standardization, and Production Quality Management; Senior Lecturer;


Read the full article 

Abstract. An installation is proposed for studying the principle of operation of an optoelectronic sensor for measuring relative air humidity. Description and structure schematic of a device for continuous monitoring of air humidity in a controlled object are presented. A device developed for calibrating humidity sensors, and algorithm for humidity sensors calibration are considered.
Keywords: digital measuring instruments, relative humidity, microclimate, optoelectronic humidity sensors, reference value, calibration of measuring instruments

References:

 

  1. Matbabayev M.M. Optoelektronnyy metod i ustroystvo kontrolya vlazhnosti vozdukha krutil'nykh i tkatskikh proizvodstv (Optoelectronic Method and Device for Controlling Air Humidity in Torsion and Weaving Industries), Extended abstract of candidate’s thesis, Tashkent, 1990. (in Russ.)
  2. Umaraliyev N. Optoelektronnyye pervichnyye izmeritel'nyye preobrazovateli lineynoy plotnosti shelka-syrtsa i nitey iz natural'nogo shelka (Linear Density Optoelectronic Primary Transducers of Raw Silk and Natural Silk Threads), Extended abstract of candidate’s thesis, Tashkent, 1991. (in Russ.)
  3. Fraden J. Handbook of Modern Sensors, Springer, 2015, 758 р.
  4. Mukhitdinov M., Musayev E.S. Opticheskiye metody i ustroystva kontrolya vlazhnosti (Optical Methods and Humidity Control Devices), Moscow, 1986, 96 р. (in Russ.)
  5. Berliner M.A. Izmereniya vlazhnosti (Humidity Measurement), Moscow, 1973, 400 р. (in Russ.)
  6. Mukhitdinov M., Musayev E.S., Rozhkov V.M. Measurement Techniques, 1981, no. 3, pp. 66–67. (in Russ.)
  7. Certificate of authorship 802856 USSR, Sposob izmereniya vlazhnosti (Method for Measuring Humidity), M. Mukhitdinov, E.S. Musayev, V.M. Rozhkov, 1981, Bulletin 5. (in Russ.)
  8. Certificate of authorship 842423 USSR, Ustroystvo dlya izmereniya vlazhnosti (Moisture Measuring Device), M. Mukhitdinov, E.S. Musayev, V.M. Rozhkov, 1981, Bulletin 24. (in Russ.)
  9. https://mash-xxl.info/info/362665/. (in Russ.)
  10. Zuev V.E., Makushkin Yu.S., Ponomarev Yu.N. Spektroskopiya atmosfery (Atmospheric Spectroscopy), Leningrad, 1987, 247 р. (in Russ.)
  11. http://www.ibsg.ru. (in Russ.)
  12. http://www.ibsg.ru/led/LED_Data/LED_PDF/LED_NS/LED-270-NS.pdf. (in Russ.)

http://www.ibsg.ru/PDF_Data/PD36-01_RU.pdf. (in Russ.)