DOI: 10.17586/1023-5086-2019-86-09-11-16
УДК: 681.786.3
Variants of nonmisadjustable optical systems of turning-angle sensors based on a BR-180° prism and a photoelectric autocollimator
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Колосов М.П., Гебгарт А.Я. Варианты нерасстраиваемых оптических систем датчиков угла поворота на основе призмы БР-180° и фотоэлектрического автоколлиматора // Оптический журнал. 2019. Т. 86. № 9. С. 11–16. http://doi.org/10.17586/1023-5086-2019-86-09-11-16
Kolosov M.P., Gebgart A.Ya. Variants of nonmisadjustable optical systems of turning-angle sensors based on a BR-180° prism and a photoelectric autocollimator [in Russian] // Opticheskii Zhurnal. 2019. V. 86. № 9. P. 11–16. http://doi.org/10.17586/1023-5086-2019-86-09-11-16
M. P. Kolosov and A. Ya. Gebgart, "Variants of nonmisadjustable optical systems of turning-angle sensors based on a BR-180° prism and a photoelectric autocollimator," Journal of Optical Technology. 86(9), 539-543 (2019). https://doi.org/10.1364/JOT.86.000539
Variants of optical systems of turning-angle sensors based on a BR-180° prism and a photoelectric autocollimator, the geometric layouts of which can be distorted under the influence of operating conditions, are considered. To ensure that the layouts are nonmisadjustable, geometric reference channels are used.
optical system, turning-angle sensor, photoelectric autocollimator, geometric reference channel, matrix radiation detector, objective, mirror, prism
OCIS codes: 120.4570, 220.4830
References:1. M. P. Kolosov, V. I. Fedoseev, and A. Ya. Gebgart, “Comparative evaluation of three modern turning-angle sensors,” J. Opt. Technol. 84(11), 743–747 (2017) [Opt. Zh. 84(11), 34–38 (2017)].
2. I. D. Bondarenko, Principles of Construction of Photoelectric Autocollimators (Univ. Izd., Minsk, 1984).
3. A. Yu. Karelin and V. I. Fedoseev, “Calibrating, providing, and confirming the accuracy characteristics of optoelectronic devices for orienting spacecraft,” Kosmonavtika Raketostroenie TsNIMASH 3(60), 123–132 (2010).
4. N. Demkovich, “Software package OOFELIE::Multiphysics—an effective tool for designing complex systems,” Elektron: Nauka Tekhnol. Biz. 1(132), 134–135 (2014).
5. A. Ya. Gebgart and M. P. Kolosov, Optics of Spacecraft Orientation Instruments (Universitetskaya Kniga, Moscow, 2017).
6. M. P. Kolosov, Optics of Adaptive Goniometers: Introduction to Design (LOGOS, Moscow, 2011).
7. M. P. Kolosov and A. Ya. Gebgart, “Turning-angle sensor,” Russian patent 2644994 (2017).
8. Yu. E. Dukarevich and M. Yu. Dukarevich, “Absolute angle converter (variants),” Russian patent 2419067 (2009).