The web of resonant periodic orbits in the Earth–Moon Quasi-Bicircular Problem including solar radiation pressure
Tài liệu tham khảo
McInnes, 1999
McKay, 2011, Survey of highly non-Keplerian orbits with low-thrust propulsion, J Guid Control Dyn, 34, 645, 10.2514/1.52133
Macdonald, 2011, Solar sail science mission applications and advancement, Adv Space Res, 48, 1702, 10.1016/j.asr.2011.03.018
MacDonald, 2007, GeoSail: An elegant solar sail demonstration mission, J Spacecr Rockets, 44, 784, 10.2514/1.22867
Gong, 2014, Solar sail heliocentric elliptic displaced orbits, J Guid Control Dyn, 37, 2021, 10.2514/1.G000660
Wang, 2016, Invariant manifold and bounds of relative motion between heliocentric displaced orbits, J Guid Control Dyn, 39, 1764, 10.2514/1.G001751
Wang, 2019, Multiple solar sail formation flying around heliocentric displaced orbit via consensus, Acta Astronaut, 154, 256, 10.1016/j.actaastro.2018.03.039
Heiligers, 2021, End-to-end trajectory design for a solar-sail-only pole-sitter at Venus, Earth, and Mars, Adv Space Res, 67, 2995, 10.1016/j.asr.2020.06.011
Baoyin, 2006, Solar sail halo orbits at the Sun-Earth artificial L1 point, Celestial Mech Dynam Astronom, 94, 155, 10.1007/s10569-005-4626-3
Heiligers J, Diedrich B, Derbes B, McInnes CR. Sunjammer: Preliminary end-to-end mission design. In: 2014 AIAA/AAS astrodynamics specialist conference. San Diego, California; 2014, http://dx.doi.org/10.2514/6.2014-4127.
Farrés, 2010, Periodic and quasi-periodic motions of a solar sail close to SL1 in the Earth–Sun system, Celestial Mech Dynam Astronom, 107, 233, 10.1007/s10569-010-9268-4
Duan X, Gómez G, Masdemont J J, Xiaokui Y. Solar sail propellant-free transfer maneuvers between libration point orbits around the collinear equilibrium points. In: Proceedings of the 69th international astronautical congress. Bremen, Germany; 2018.
Duan, 2020, A picture of solar-sail heteroclinic enhanced connections between Lissajous libration point orbits, Commun Nonlinear Sci Numer Simul, 85, 10.1016/j.cnsns.2020.105252
Farrés, 2009
Tsuda, 2013, Achievement of IKAROS–Japanese deep space solar sail demonstration mission, Acta Astronaut, 82, 183, 10.1016/j.actaastro.2012.03.032
Johnson, 2011, Status of solar sail technology within NASA, Adv Space Res, 48, 1687, 10.1016/j.asr.2010.12.011
Betts B, Nye B, Vaughn J, Greeson E, Chute R, Spencer DA, Ridenoure RW, Munakata R, Wong SD, Diaz A, Stetson DA, Foley JD, Bellardo JM, Plante BA. Lightsail 1 mission results and public outreach strategies. In: 4th international symposium on solar sailing. Kyoto, Japan; 2017.
Spencer, 2021, The LightSail 2 solar sailing technology demonstration, Adv Space Res, 67, 2878, 10.1016/j.asr.2020.06.029
Farrés, 2019, Road map to L4/L5 with a solar sail, Aerosp Sci Technol, 95, 10.1016/j.ast.2019.105458
Simo, 2009, Solar sail orbits at the Earth-Moon libration points, Commun Nonlinear Sci Numer Simul, 14, 4191, 10.1016/j.cnsns.2009.03.032
Ozimek, 2009, Design of solar sail trajectories with applications to lunar south pole coverage, J Guid Control Dyn, 32, 1884, 10.2514/1.41963
Heiligers, 2015, Solar sail Lyapunv and halo orbits in the Earth-Moon three-body problem, Acta Astronaut, 116, 25, 10.1016/j.actaastro.2015.05.034
Yuan, 2018, Periodic orbits of solar sail equipped with reflectance control device in Earth-Moon system, Astrophys Space Sci, 363, 23, 10.1007/s10509-017-3223-8
Jorba-Cuscó M, Farrés A, Jorba A. Solar sail resonant periodic orbits in the augmented Earth-Moon Quasi-Bicircular Problem. In: 69th international astronautical congress. Bremen, Germany; 2018.
Gong, 2014, Orbital motions of a solar sail around the L2 Earth–Moon libration point, J Guid Control Dyn, 37, 1349, 10.2514/1.G000063
Wawrzyniak, 2011
Gao, 2019, Hybrid sail displaced orbits around L2 point in the elliptic Earth-Moon system, J Guid Control Dyn, 42, 416, 10.2514/1.G003748
Heiligers, 2016, Extension of Earth-Moon libration point orbits with solar sail propulsion, Astrophys Space Sci, 361, 241, 10.1007/s10509-016-2783-3
Heiligers, 2018, Novel solar-sail mission concepts for high-latitude Earth and lunar observation, J Guid Control Dyn, 41, 212, 10.2514/1.G002919
Gao, 2019, Propellant-efficient station-keeping using a hybrid sail in the Earth-Moon system, Nonlinear Dynam, 95, 1323, 10.1007/s11071-018-4631-1
Jorba-Cuscó M, Farrés A, Jorba A. Periodic and quasi-periodic motion for a solar sail in the Earth-Moon system. In: 67th international astronautical congress. Guadalajara, México; 2016.
Jorba-Cuscó, 2018, Two periodic models for the Earth-Moon system, Front Appl Math Stat, 4, 32, 10.3389/fams.2018.00032
Jorba-Cuscó, 2018
Rosales de Cáceres, 2020
Simó, 1995, The bicircular model near the triangular libration points of the RTBP, 343
Andreu, 1998
Gómez, 2003, Dynamical substitutes of the libration points for simplified solar system models, 373
Gómez, 2001, The dynamics around the collinear equilibrium points of the RTBP, Physica D, 157, 283, 10.1016/S0167-2789(01)00312-8
Stoer, 1983
Simó, 1990, On the analytical and numerical approximation of invariant manifolds, 285
Farrés, 2017, Transfer orbits to L4 with a solar sail in the Earth-Sun system, Acta Astronaut, 137, 78, 10.1016/j.actaastro.2017.04.010
Lee, 2019