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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 621.384.3

Optimizing the parameters of staring–scanning optoelectronic systems for detecting small high-temperature objects with variable radiation intensity

For Russian citation (Opticheskii Zhurnal):

Габдрахманов Т.Р., Яцык В.С. Оптимизация параметров смотряще-сканирующих оптико-электронных систем обнаружения малоразмерных высокотемпературных объектов с переменной интенсивностью излучения // Оптический журнал. 2012. Т. 79. № 3. С. 33–42.

Gabrakhmanov T. R., Yatsyk V. S. Optimizing the parameters of staring–scanning optoelectronic systems for detecting small high-temperature objects with variable radiation intensity // Opticheskii Zhurnal. 2012. V. 79. № 3. P. 33–42.

For citation (Journal of Optical Technology):

T. R. Gabrakhmanov and V. S. Yatsyk, "Optimizing the parameters of staring–scanning optoelectronic systems for detecting small high-temperature objects with variable radiation intensity," Journal of Optical Technology. 79(2), 150-156 (2012). https://doi.org/10.1364/JOT.79.000150

Abstract:

This paper discusses the features of using optoelectronic circular-scan systems with array-type photodetectors. A technique is developed for estimating the range of action of such systems, taking into account the time-varying radiation intensity of an object. The optimum scanning period of the systems and the optimum exposure time of the photodetector array are determined, using the criterion of the maximum range of detection of an object in minimum time.

Keywords:

avionics, infrared spectral domain, circular view, detection, variable radiation intensity, optimization, period of view, exposure time, spatial filtering

OCIS codes: 110.2970, 040.3060, 3000.36110

References:

1. J. M. Lloyd, ed., Thermal Imaging Systems (Plenum Press, 1975; Mir, Moscow, 1978).
2. V. V. Tarasov and Yu. G. Yakushenkov, Staring-Type Infrared Systems (Logos, Moscow, 2004).
3. O. Naveh, “Sensitivity of scanning and staring infrared seekers for air-to-air missiles,” Proc. SPIE 3061, 692 (1997).
4. V. L. Levshin, Spatial Filtering in Optical Ranging Systems (Sovetskoe Radio, Moscow, 1971).
5. T. R. Gabdrakhmanov, V. A. Ovsyannikov, and V. S. Yatsyk, “On the development of techniques for estimating the range of action of nonscanning aviation devices for optical rangefinding,” in Collection of Materials of the Twentieth All-Russia Interuniversity Scientific–Engineering Conference on Electromechanical and Intercamera Processes in Power Apparatus, Jet
Acoustics and Diagnostics, Devices and Methods of Monitoring the Natural Medium, Substances, Materials, and Items (Otechestvo, Kazan, 2008), pp. 283–284, chap. 2.
6. T. R. Gabdrakhmanov and V. S. Yatsyk, “On the question of choosing an array-type photodetector for a staring–scanning optoelectronic system for detecting high-temperature objects,” in Collection of Materials of the Twenty-First All-Russia Interuniversity Scientific–Engineering Conference on Electromechanical and Intercamera Processes in Power Apparatus, Jet
Acoustics and Diagnostics, Devices and Methods of Monitoring the Natural Medium, Substances, Materials, and Items (Otechestvo, Kazan, 2009), pp. 228–230, chap. 2.
7. T. R. Gabdrakhmanov and V. S. Yatsyk, “Optimizing the signal-accumulation time of a staring–scanning optoelectronic system for detecting small objects,” in International Optical Congress OPTIKA-Twenty-First Century, St. Petersburg, Transactions of the D. S. Rozhdestvenski˘ı Optical Society. International Conference on Applied Optics 2008, Optical Instrumentation (SPbGU ITMO, St. Petersburg, 2008), vol. 1, pp. 21–27.