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Dynamics of a spacecraft and normalization around Lagrangian points in the Neptune–Triton system
Authors:TJ Stuchi  T Yokoyama  AA Corrêa  RH Solórzano  DM Sanchez  SMG Winter  OC Winter
Institution:1. Universidade Federal do Rio de Janeiro Instituto de Física Rio de Janeiro (RJ), Brazil;2. Universidade Estadual Paulista, IGCE-DEMAC Caixa Postal 178, CEP 13500-970 Rio Claro (São Paulo), Brazil;3. Star One S/A, Rua Camerino 96, sala 312 Estação U2F, CEP 200080-001, Rio de Janeiro (RJ), Brazil;4. Grupo de Dinâmica Orbital & Planetologia da UNESP, CP 205, CEP 12516-410, Guaratinguetá, SP, Brazil;5. Instituto Nacional de Pesquisas Espaciais-INPE, Av. dos Astronautas 1758, Jdim da Granja, CEP 12227-010 S.José dos Campos (SP), Brazil
Abstract:The problem of a spacecraft orbiting the Neptune–Triton system is presented. The new ingredients in this restricted three body problem are the Neptune oblateness and the high inclined and retrograde motion of Triton. First we present some interesting simulations showing the role played by the oblateness on a Neptune’s satellite, disturbed by Triton. We also give an extensive numerical exploration in the case when the spacecraft orbits Triton, considering Sun, Neptune and its planetary oblateness as disturbers. In the plane a × I (a = semi-major axis, I = inclination), we give a plot of the stable regions where the massless body can survive for thousand of years. Retrograde and direct orbits were considered and as usual, the region of stability is much more significant for the case of direct orbit of the spacecraft (Triton’s orbit is retrograde). Next we explore the dynamics in a vicinity of the Lagrangian points. The Birkhoff normalization is constructed around L2, followed by its reduction to the center manifold. In this reduced dynamics, a convenient Poincaré section shows the interplay of the Lyapunov and halo periodic orbits, Lissajous and quasi-halo tori as well as the stable and unstable manifolds of the planar Lyapunov orbit. To show the effect of the oblateness, the planar Lyapunov family emanating from the Lagrangian points and three-dimensional halo orbits are obtained by the numerical continuation method.
Keywords:Space mission  Spacecraft dynamics  Spatial engineering  Triton&ndash  Neptune system  Birkhoff normalization  Three body problem with oblateness
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