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@article{ISU_2020_20_1_a7, author = {I. A. Pankratov and Ya. G. Sapunkov and Yu. N. Chelnokov}, title = {Quaternion models and algorithms for solving the general problem of optimal reorientation of spacecraft orbit}, journal = {Izvestiya of Saratov University. Mathematics. Mechanics. Informatics}, pages = {93--104}, publisher = {mathdoc}, volume = {20}, number = {1}, year = {2020}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/ISU_2020_20_1_a7/} }
TY - JOUR AU - I. A. Pankratov AU - Ya. G. Sapunkov AU - Yu. N. Chelnokov TI - Quaternion models and algorithms for solving the general problem of optimal reorientation of spacecraft orbit JO - Izvestiya of Saratov University. Mathematics. Mechanics. Informatics PY - 2020 SP - 93 EP - 104 VL - 20 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/ISU_2020_20_1_a7/ LA - ru ID - ISU_2020_20_1_a7 ER -
%0 Journal Article %A I. A. Pankratov %A Ya. G. Sapunkov %A Yu. N. Chelnokov %T Quaternion models and algorithms for solving the general problem of optimal reorientation of spacecraft orbit %J Izvestiya of Saratov University. Mathematics. Mechanics. Informatics %D 2020 %P 93-104 %V 20 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/ISU_2020_20_1_a7/ %G ru %F ISU_2020_20_1_a7
I. A. Pankratov; Ya. G. Sapunkov; Yu. N. Chelnokov. Quaternion models and algorithms for solving the general problem of optimal reorientation of spacecraft orbit. Izvestiya of Saratov University. Mathematics. Mechanics. Informatics, Tome 20 (2020) no. 1, pp. 93-104. http://geodesic.mathdoc.fr/item/ISU_2020_20_1_a7/
[1] Chelnokov Yu. N., “The use of quaternions in the optimal control problems of motion of the center of mass of a spacecraft in a newtonian gravitational field: II”, Cosmic Research, 41:1 (2003), 85–99 | DOI
[2] Abalakin V. K., Aksenov E. P., Grebennikov E. A., Demin V. G., Riabov Yu. A., Reference guide on celestial mechanics and astrodynamics, Nauka, M., 1976, 864 pp. (in Russian)
[3] Duboshin G. N., Celestial mechanics. Main tasks and methods, Nauka, M., 1968, 799 pp. (in Russian)
[4] Pankratov I. A., Sapunkov Ya. G., Chelnokov Yu. N., “About a Problem of Spacecraft's Orbit Optimal Reorientation”, Izv. Saratov Univ. (N. S.), Ser. Math. Mech. Inform., 12:3 (2012), 87–95 (in Russian) | DOI
[5] Pankratov I. A., Sapunkov Ya. G., Chelnokov Yu. N., “Solution of a Problem of Spacecraft's Orbit Optimal Reorientation Using Quaternion Equations of Orbital System of Coordinates Orientation”, Izv. Saratov Univ. (N. S.), Ser. Math. Mech. Inform., 13:1-1 (2013), 84–92 (in Russian) | DOI
[6] Kirpichnikov S. N., Bobkova A. N., Os'kina Yu. V., “Minimum-time impulse transfers between coplanar circular orbits”, Cosmic Research, 29:3 (1991), 367–374 (in Russian)
[7] Grigoriev K. G., Grigoriev I. S., Petrikova Yu. D., “The fastest maneuvers of a spacecraft with a jet engine of a large limited thrust in a gravitational field in a vacuum”, Cosmic Research, 38:2 (2000), 160–181
[8] Kiforenko B. M., Pasechnik Z. V., Kyrychenko S. B., Vasiliev I. Yu., “Minimum time transfers of a low-thrust rocket in strong gravity fields”, Acta Astronautica, 52:8 (2003), 601–611 | DOI
[9] Fazelzadeh S. A., Varzandian G. A., “Minimum-time earth-moon and moon-earth orbital maneuevers using time-domain finite element method”, Acta Astronautica, 66:3–4 (2010), 528–538 | DOI
[10] Grigorev K. G., Fedyna A. V., “Optimal flights of a spacecraft with jet engine large limited thrust between coplanar circular orbits”, Cosmic Research, 33:4 (1995), 403–416 (in Russian)
[11] Ryzhov S. Yu., Grigoriev I. S., “On solving the problems of optimization of trajectories of many-revolution orbit transfers of spacecraft”, Cosmic Research, 44:3 (2006), 258–267 | DOI
[12] Grigoriev I. S., Grigoriev K. G., “The use of solutions to problems of spacecraft trajectory optimization in impulse formulation when solving the problems of optimal control of trajectories of a spacecraft with limited thrust engine: I”, Cosmic Research, 45:4 (2007), 339–347 | DOI
[13] Grigoriev I. S., Grigoriev K. G., “The use of solutions to problems of spacecraft trajectory optimization in impulse formulation when solving the problems of optimal control of trajectories of a spacecraft with limited thrust engine: II”, Cosmic Research, 45:6 (2007), 523–534 | DOI
[14] Kirpichnikov S. N., Bobkova A. N., “Optimal impulse interorbital flights with aerodynamic maneuvers”, Cosmic Research, 30:6 (1992), 800–809 (in Russian)
[15] Kirpichnikov S. N., Kuleshova L. A., Kostina Yu. L., “A qualitative analysis of impulsive minimum-fuel flight paths between coplanar circular orbits with a given launch time”, Cosmic Research, 34:2 (1996), 156–164
[16] Condurache D., Martinusi V., “Quaternionic Exact Solution to the Relative Orbital Motion Problem”, Journal of Guidance, Control, and Dynamics, 33:4 (2010), 1035–1047 | DOI
[17] Condurache D., Burlacu A., “Onboard Exact Solution to the Full-Body Relative Orbital Motion Problem”, Journal of Guidance, Control, and Dynamics, 39:12 (2016), 2638–2648 | DOI
[18] Ishkov S. A., Romanenko V. A., “Forming and correction of a high-elliptical orbit of an earth satellite with low-thrust engine”, Cosmic Research, 35:3 (1997), 268–277
[19] Salmin V. V., Sokolov V. O. Approximate calculation of the formation manoeuvres of the satellite orbit the Earth with a small engine thrusts, Cosmic Research, 29:6 (1991), 872–888 (in Russian)
[20] Afanas'eva Yu. V., Chelnokov Yu. N., “The problem of optimal control of the orientation of an orbit of a spacecraft as a deformable figure”, Journal of Computer and Systems Sciences International, 47:4 (2008), 621–634 | DOI
[21] Pontriagin L. S., Boltianskii V. G., Gamkrelidze R. V., Mishchenko E. F., The mathematical theory of optimal processes, Nauka, M., 1983, 393 pp. (in Russian)
[22] Moiseev N. N., Numerical methods in the theory of optimal systems, Nauka, M., 1971, 424 pp. (in Russian)
[23] Chelnokov Yu. N., “The Use of Quaternions in the Optimal Control Problems of Motion of the Center of Mass of a Spacecraft in a Newtonian Gravitational Field: III”, Cosmic Research, 41:5 (2003), 460–477 | DOI
[24] Bordovitsyna T. V., Modern numerical methods in problems of celestial mechanics, Nauka, M., 1984, 136 pp. (in Russian)