Formation of high inclined orbits to the ecliptic by multiple gravity assist maneuvers

Author:

Golubev Yu. F.,Grushevskii A. V.,Koryanov V. V.,Tuchin A. G.,Tuchin D. A.

Publisher

Pleiades Publishing Ltd

Subject

Applied Mathematics,Computer Networks and Communications,Computer Vision and Pattern Recognition,Information Systems,Theoretical Computer Science,Control and Systems Engineering,Software

Reference19 articles.

1. Yu. F. Golubev, A. V. Grushevskii, V. V. Koryanov, A. G. Tuchin, and D. A. Tuchin, “To the high inclined orbit formation with use of gravity assists maneuvers,” KIAM Preprint No. 64 (Keldysh Inst. Appl. Math., Moscow, 2015).

2. Yu. F. Golubev, A. V. Grushevskii, V. V. Koryanov, A. G. Tuchin, and D. A. Tuchin, “Orbit’s inclination change of celestial bodies in the Solar system with using gravity assists maneuvers,” KIAM Preprint No. 15 (Keldysh Inst. Appl. Math., Moscow, 2016).

3. Yu. F. Golubev, A. V. Grushevskii, V. V. Koryanov, A. G. Tuchin, and D. A. Tuchin, “The synthesis of gravity assist maneuvers sequence of the spacecraft to achieve high inclined orbits over ecliptic,” KIAM Preprint No. 43 (Keldysh Inst. Appl. Math., Moscow, 2016).

4. A. V. Labunsky, O. V. Papkov, and K. G. Sukhanov, Multiple Gravity Assist Interplanetary Trajectories, ESI Book Series (Gordon and Breach, London, 1998), pp. 9–266.

5. N. J. Strange, R. Russell, and B. Buffington, “Mapping the V-infinity globe,” in Proceedings of the AIAA/AAS Space Flight Mechanics Meeting, 2007, AAS Paper 07–277. http://russell.ae.utexas.edu/FinalPublications/ConferencePapers/07Aug_AAS-07-277.pdf.

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