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Search for orbits around the Lagrangian points of a triple asteroid and orbital transfers

Grant number: 16/18418-0
Support Opportunities:Scholarships in Brazil - Doctorate
Effective date (Start): June 01, 2017
Effective date (End): August 31, 2021
Field of knowledge:Engineering - Aerospace Engineering - Flight Dynamics
Acordo de Cooperação: Coordination of Improvement of Higher Education Personnel (CAPES)
Principal Investigator:Antônio Fernando Bertachini de Almeida Prado
Grantee:Leonardo Barbosa Torres dos Santos
Host Institution: Instituto Nacional de Pesquisas Espaciais (INPE). Ministério da Ciência, Tecnologia e Inovações (Brasil). São José dos Campos , SP, Brazil
Associated research grant:11/08171-3 - Orbital dynamics of minor bodies, AP.TEM
Associated scholarship(s):18/06966-8 - Searching for orbits and station keep maneuvers applied to space missions around the equilibrium points of the Earth-moon system, BE.EP.DR


Currently, there is a growing interest in space missions of spacecrafts seeking to approach small bodies such as asteroids and comets (Kikuchi S.; Tsuda Y. and Kawaguchi, 2016). There are many important aspects in these missions, such as scientific research of these bodies, which keep characteristics of the formation of the solar system. Believing in the scientific and economic return of such space exploration, we propose studies to collaborate in carrying out missions for small body systems, a topic of great academic interest and with large potential for applications. It is intended to seek methods and models to calculate spatial trajectories around the Lagrangian points of a multiple system of asteroids. It is intended to take into account the non-spherical form of both primary bodies, their distribution of mass, size, rotation of the asteroids around their own axis and, if feasible, to include the albedo of the primary. After determining the locations of the equilibrium points, comes the main point of the work proposed here, which is finding families of orbits around the equilibrium point. Besides that, trajectories for orbital transfers between these orbits around the equilibrium points will be searched, spending as little energy as possible. It is also proposed by the applicant to find orbits around asteroids called "Delta-V Assisted Periodic Orbits" (DVAPOs). This type of periodic orbit use an impulsive maneuver in each orbital period. This periodic increase of velocity makes a quasi-periodic orbit to become a periodic orbit (Kikuchi and Tsuda, 2014). (AU)

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Scientific publications (5)
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
TORRES DOS SANTOS, LEONARDO BARBOSA; BERTACHINI DE ALMEIDA PRADO, ANTONIO F.; SANCHEZ, DIOGO MERGUIZO. Lifetime of a spacecraft around a synchronous system of asteroids using a dipole model. ASTROPHYSICS AND SPACE SCIENCE, v. 362, n. 11, . (11/08171-3, 14/22293-2, 14/22295-5, 16/18418-0, 16/14665-2)
SANTOS, L. B. T.; MARCHI, L. O.; ALJBAAE, S.; SOUSA-SILVA, P. A.; SANCHEZ, D. M.; PRADO, A. F. B. A.. A particle-linkage model for elongated asteroids with three-dimensional mass distribution. Monthly Notices of the Royal Astronomical Society, v. 502, n. 3, p. 4277-4289, . (16/24561-0, 16/18418-0)
MONTEIRO, F.; RONDON, E.; LAZZARO, D.; OEY, J.; EVANGELISTA-SANTANA, M.; ARCOVERDE, P.; DE CICCO, M.; SILVA-CABRERA, J. S.; RODRIGUES, T.; SANTOS, L. B. T.. Physical characterization of equal-mass binary near-Earth asteroid 2017 YE5: a possible dormant Jupiter-family comet. Monthly Notices of the Royal Astronomical Society, v. 507, n. 4, p. 5403-5414, . (16/18418-0)
L. B. T. SANTOS; L. O. MARCHI; P. A. SOUSA-SILVA; D. M. SANCHEZ; S. ALJBAAE; A. F. B. A. PRADO. Dynamics around an asteroid modeled as a mass tripole. REVISTA MEXICANA DE ASTRONOMIA Y ASTROFISICA, v. 56, n. 2, p. 269-286, . (16/24561-0, 16/18418-0, 18/00059-9)
SANTOS, WILLER G.; PRADO, ANTONIO F. B. A.; OLIVEIRA, GERALDO M. C.; SANTOS, LEONARDO B. T.. Analysis of impulsive maneuvers to keep orbits around the asteroid 2001SN263. ASTROPHYSICS AND SPACE SCIENCE, v. 363, n. 1, . (16/24561-0, 16/18418-0, 16/14665-2)

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