Evolution of the orbit of a passive fragment with a large area of surface in high Earth orbit
Matematičeskoe modelirovanie i čislennye metody, no. 5 (2015), pp. 83-93 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

We have analysed and presented observations of artificial celestial body 43096. We obtained the observations in 2006–2012 within the project “Scientific Network of Optic Instruments for Astrometric and Photometric Observations” (ISON). We have determined the Kepler orbit elements and state vector as of 1 hour 55 minutes 50,76 seconds, November 24, 2006 UTC (1:55:50,76 November 24,2006 UTC). We have performed numerical integration of the motion equations, taking into account the perturbations from the polar compression of the Earth, the Moon, the Sun and the solar radiation pressure. We propose a method for deorbiting artificial celestial bodies in high altitude orbits. The method is based on a numerical model of motion in circumterrestrial space, which takes into account only the largest perturbations. For the first time ever we have obtained such a great amount of data on objects with a large area of surface to mass ratio over long time spans. The data allowed us to study the objects and reveal their peculiar properties.
Keywords: Celestial mechanics, space debris, reduction of observations.
@article{MMCM_2015_5_a5,
     author = {A. A. Bazey and N. V. Bazey and G. K. Borovin and V. E. Zolotov and V. I. Kashuba and S. G. Kashuba and V. V. Kupriyanov and I. E. Molotov},
     title = {Evolution of the orbit of a passive fragment with a large area of surface in high {Earth} orbit},
     journal = {Matemati\v{c}eskoe modelirovanie i \v{c}islennye metody},
     pages = {83--93},
     year = {2015},
     number = {5},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/MMCM_2015_5_a5/}
}
TY  - JOUR
AU  - A. A. Bazey
AU  - N. V. Bazey
AU  - G. K. Borovin
AU  - V. E. Zolotov
AU  - V. I. Kashuba
AU  - S. G. Kashuba
AU  - V. V. Kupriyanov
AU  - I. E. Molotov
TI  - Evolution of the orbit of a passive fragment with a large area of surface in high Earth orbit
JO  - Matematičeskoe modelirovanie i čislennye metody
PY  - 2015
SP  - 83
EP  - 93
IS  - 5
UR  - http://geodesic.mathdoc.fr/item/MMCM_2015_5_a5/
LA  - ru
ID  - MMCM_2015_5_a5
ER  - 
%0 Journal Article
%A A. A. Bazey
%A N. V. Bazey
%A G. K. Borovin
%A V. E. Zolotov
%A V. I. Kashuba
%A S. G. Kashuba
%A V. V. Kupriyanov
%A I. E. Molotov
%T Evolution of the orbit of a passive fragment with a large area of surface in high Earth orbit
%J Matematičeskoe modelirovanie i čislennye metody
%D 2015
%P 83-93
%N 5
%U http://geodesic.mathdoc.fr/item/MMCM_2015_5_a5/
%G ru
%F MMCM_2015_5_a5
A. A. Bazey; N. V. Bazey; G. K. Borovin; V. E. Zolotov; V. I. Kashuba; S. G. Kashuba; V. V. Kupriyanov; I. E. Molotov. Evolution of the orbit of a passive fragment with a large area of surface in high Earth orbit. Matematičeskoe modelirovanie i čislennye metody, no. 5 (2015), pp. 83-93. http://geodesic.mathdoc.fr/item/MMCM_2015_5_a5/

[1] Molotov I.E., Agapov V.M., Kupriyanov V.V., Proceedings of the Central Astronomical Observatory of Russian Academy of Sciences at Pulkovo, 1:219 (2009), 233–248

[2] Volvach A.E., Rumyantsev V.V., Molotov I.E., Space Science and Technology, 12:5 (2006), 50–57

[3] Bazyey A.A., Sibiryakova E.S., Shulga A.V., “The method for fast determination of Geostationary Earth Satellite orbit from angular coordinates measurements”, Odessa Astronomical Publications, 18 (2005), 8–13

[4] Eskobal P., Methods of Determining Orbits, Mir Publ., Moscow, 1970, 235 pp.

[5] Borodovitsyna T.V., Avdyushev V.A., Theory of Motion of Artificial Earth Satellite. Analytical and Numerical Methods, Tomsk University Publ., Tomsk, 2007, 235 pp.

[6] http://ssd.jpl.nasa.gov

[7] Bazyey A.A., Kara I.V., “Integration of differential equation for celestial bodies' motion by the Runge. Kutt method in the third order”, Odessa Astronomical Publications, 18 (2005), 14–17