ITMO
ru/ ru

ISSN: 1023-5086

ru/

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”

Article submission Подать статью
Больше информации Back

DOI: 10.17586/1023-5086-2020-87-06-66-72

УДК: 535.317.2

Optical system of a miniature wide-angle solar sensor

For Russian citation (Opticheskii Zhurnal):

Колосов М.П., Гебгарт А.Я., Лобанов Д.Ю., Зензинов С.Ю., Цымбал Г.Л. Оптическая система малогабаритного широкоугольного солнечного датчика // Оптический журнал. 2020. Т. 87. № 6. С. 6672. http://doi.org/10.17586/1023-5086-2020-87-06-66-72

 

Kolosov M.P., Gebgart A.Ya., Lobanov D.Yu., Zenzinov S.Yu., Tsymbal G.L. Optical system of a miniature wide-angle solar sensor [in Russian] // Opticheskii Zhurnal. 2020. Т. 87. № 6. С. 6672. http://doi.org/10.17586/1023-5086-2020-87-06-66-72

For citation (Journal of Optical Technology):

M. P. Kolosov, A. Ya. Gebgart, D. Yu. Lobanov, S. Yu. Zenzinov, and G. L. Tsymbal, "Optical system of a miniature wide-angle solar sensor," Journal of Optical Technology. 87(6), 371-375 (2020). https://doi.org/10.1364/JOT.87.000371

Abstract:
Optical systems of miniature and/or wide-angle solar sensors with photodetector arrays intended for use in spacecraft orientation systems are presented. What we believe to be a new optical system of a miniature wide-angle solar sensor is demonstrated and analyzed.
Keywords:

optical system, solar sensor, array photodetector, lens, overall mass characteristics

OCIS codes: 220.0220, 220.3620, 220. 4830

References:

1. M. G. Pirogov, V. I. Varlamov, G. L. Tsymbal, N. M. Strizhova, A. Y. Gebgart, V. A. Polkunov, and A. A. Vetskus, “Instruments for spacecraft orientation with respect to the Sun based on active-pixel detector arrays,” J. Opt. Technol. 84(12), 805–810 (2017) [Opt. Zh. 84(12), 18–24 (2017)].

2. M. G. Pirogov, V. I. Varlamov, S. A. Gerasimov, V. V. Gordyakin, A. Y. Karelin, V. O. Knyazev, N. M. Strizhova, V. I. Fedoseev, and G. L. Tsymbal, “Modern spacecraft-astroorientation devices developed by Geofizika–Kosmos Scientific Production Enterprise: a review,” J. Opt. Technol. 84(11), 719–726 (2017) [Opt. Zh. 84(11), 4–13 (2017)].

3. G. S. Cheremukhin, Devices for Spacecraft Solar Orientation (Voentekhizdat, Moscow, 2004).

4. V. I. Fedoseev and M. P. Kolosov, Optoelectronic Devices for Spacecraft Orientation and Navigation (Logos, Moscow, 2007).

5. I. P. Smirnov, “A review of modern solar sensors for small spacecraft,” in Proceedings of the 15th Scientific Conference on Systems for Observation, Monitoring, and Remote Probing of the Earth (2018).

6. V. S. Shil’nikovskii, T. S. Gavrilenko, V. I. Verkhoturov, and P. G. Sakvarelidze, “Device for determination of spacecraft orientation accuracy,” Russian patent 134518 (2013).

7. S. A. Smirnov, I. A. Kopylov, V. M. Glebov, and A. A. Napalkov, “Widefield solar position sensor,” Russian patent 2700363 (2019).

8. A. Y. Gebgart and M. P. Kolosov, Optics for Spacecraft Orientation Devices (Universitetskaya Kniga, Moscow, 2017).

9. R. V. Bessonov, E. S. Karavaeva, and Y. D. El’yashev, “Investigation of properties of CMOS-array of CMOSIS CMV-4000 image sensor,” in Proceedings of the Russian Conference on Modern Problems of Spacecraft Orientation and Navigation (2014), pp. 148–158.

10. G. A. Avanesov, Y. L. Ziman, E. V. Zaretskaya, M. I. Kudelin, A. V. Nikitin, and A. A. Forsh, “Optical solar sensor: features of design and testing equipment,” in Proceedings of the All-Russian Scientific-Technical Conference on Modern Problems of Spacecraft Orientation and Navigation (2008), pp. 78–89.

11. A. Y. Kisner, D. V. Motin, V. N. Motin, and V. V. Mironov, “Optical solar sensor,” Russian patent 2517979 (2014).

12. M. P. Kolosov and A. Y. Gebgart, “Optical systems of modern static spacecraft-orientation devices,” J. Opt. Technol. 84(12), 793–798 (2017) [Opt. Zh. 84(12), 3–10 (2017)].

13. A. Y. Gebgart, “Design features of some types of ultrawide-angle objectives,” J. Opt. Technol. 77(9), 538–541 (2010) [Opt. Zh. 77(9), 17–21 (2010)].

14. Y. A. Videtskikh, A. N. Egupov, M. G. Pirogov, and B. K. Khairulin, “Sensor for solar angular position,” Russian patent 2308005 (2007).

15. M. P. Kolosov, A. Y. Gebgart, D. Y. Lobanov, S. Y. Zenzinov, and G. L. Tsymbal, “Wide-field solar sensor,” Russian patent 175758 (2017).