Preview

Izmeritel`naya Tekhnika

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Certification of a two-channel automated infrared imaging synthesis system to test matrix photo receivers

https://doi.org/10.32446/0368-1025it.2020-4-27-32

Abstract

A program and methodology of the primary (periodic) certification of the two-channel automated system of synthesis of dynamic and static infrared images to control the characteristics of matrix photo reception devices has been developed. The method of appraisal of the most significant characteristics of the system is described: the accuracy of positioning of a three-coordinated scanning device with numerical software control; The size of the linear field in the plane of the image of the objects and background channels; Working spectral range and irradiation range the diameter of the point object and the energy concentration factor in the object scattering spot in the plane of the image of the object's channel. Confirmed by independent irradiance levels change in optical object channel in the range 10–9–10–6 W/cm2, and the background channel 10–9–10–7 W/cm2. The minimum size of a dynamic object does not exceed 30 μm, the speed of its displacement reaches 250 μm/s. Three-dimensional precision positioning system provides repeatability for coordinates less than 2 μm range up to 200 mm.

About the Authors

A. G. Verhoglyad
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Aleksander G. Verhoglyad

Novosibirsk



A. V. Soldatenko
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Aleksey V. Soldatenko

Novosibirsk



A. G. Elesin
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Andrey G. Elesin

Novosibirsk



V. M. Vedernikov
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Vladimir M. Vedernikov

Novosibirsk



M. F. Stupak
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Mikhail F. Stupak

Novosibirsk



S. A. Kokarev
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Sergey A. Kokarev

Novosibirsk



S. N. Makarov
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

 Sergey N. Makarov

Novosibirsk



V. N. Seroshtan
Technological Design Institute of Scientifi c Instrument Engineering; Siberian Branch of the Russian Academy of Sciences
Russian Federation

Venera N. Seroshtan

Novosibirsk



Yu. I. Belousov
The Branch of JSC "Kometa Corp." – "Electro Optical Surveillance Systems" (BJSC KC EOSS); ITMO University
Russian Federation

Yuri I. Belousov

St. Petersburg



E S. Postnikov
ITMO University
Russian Federation

Evgeny S. Postnikov

St. Petersburg



References

1. Kozlov K. V., Patrashin A. I., Byrlakov I. D., Bychkovsky Y. S., Drazhnikov B. N., Kyznetsov P. A., Uspekhi prikladnoj fi ziki, 2017, vol. 5, no. 1, pp. 63–79 (in Russian).

2. Greg Duane, Proc. SPIE 0931, Sensor Fusion, 9 August 1988, pp. 180–185, available at: https://doi.org/10.1117/12.946666(accessed: 10.12.2019).

3. Verhoglyad A. G., Gibin I. S., Elesin A. G., Kastorskij L. B., Kokarev S. A., Soldatenko A. V., Stupak M. F., Uspekhi prikladnoj fi ziki, 2018, vol. 6, no. 3, pp. 260–268 (in Russian).

4. Verhoglyad A. G., Gibin I. S., Elesin A. G., Makarov S. N., Stupak M. F., Datchiki & Systemi, 2018, no. 8–9, рр. 37–40 (in Russian).

5. Verhoglyad A. G., Gibin I. S., Elesin A. G., Makarov S. N., Stupak M. F., Prikladnaja fi zika, 2018, no. 3, pp. 79–84 (in Russian).

6. Gibin I. S., Kolesnikov G. V., Uspekhi prikladnoj fi ziki, 2014, vol. 2, no. 3, pp. 293–302 (in Russian).

7. Kurt V. I., Voronko M. Yu., Vasiliev D. Yu., Proceedings of the XXIV International scientifi c and technical conference on photoelectronics and night vision devices, Moscow, May 24–27 2016, Moscow, Orion Publ., 2016, рр. 268–270.

8. Kevin Sparkman, Joe LaVeigne, Jim Oleson, Greg Franks, Steve McHugh, John Lannon, and Steve Solomon, Proc. SPIE, 2008, no. 6942. DOI:10.1117/12.793171

9. Cole J. S. and Jolly A. C., Proc. SPIE, 1996, no. 2741, pp. 14–19. DOI:10.1117/12.241103

10. Jay James, Joe LaVeigne, Jim Oleson, Greg Matis, John Lannon, Scott Goodwin, Alan Huff man, Steve Solomon, and Paul Bryant, Proc SPIE, 2007, no. 6544, р. 654405. DOI:10.1117/12.720610

11. Bryant P., Oleson J., James J., McHugh S., Lannon J., Vellenga D., Goodwill S., Huff man A., Solomon S. L., and Goldsmith G. C., Proc. SPIE, 2005, no. 5785, р. 1. DOI:10.1117/12.603972

12. Bryant P., James J., Oleson J., McHugh S. W., and Solomon S., Proc. SPIE, 2003, no. 5092, р. 91. DOI:10.1117/12.498066

13. Verhoglyad A. G., Elesin A. G., Vedernikov V. M., Stupak M. F., Makarov S. N., Izmeritel’naya tekhnika, 2020, no. 2, рр. 33–37 (in Russian). DOI:10.32446/0368-1025it.2020-2-33-37


Review

For citations:


Verhoglyad A.G., Soldatenko A.V., Elesin A.G., Vedernikov V.M., Stupak M.F., Kokarev S.A., Makarov S.N., Seroshtan V.N., Belousov Yu.I., Postnikov E.S. Certification of a two-channel automated infrared imaging synthesis system to test matrix photo receivers. Izmeritel`naya Tekhnika. 2020;(4):27-32. (In Russ.) https://doi.org/10.32446/0368-1025it.2020-4-27-32

Views: 120


ISSN 0368-1025 (Print)
ISSN 2949-5237 (Online)