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2016 | OriginalPaper | Buchkapitel

Station Keeping Strategies for a Solar Sail in the Solar System

verfasst von : Ariadna Farrés, Àngel Jorba

Erschienen in: Recent Advances in Celestial and Space Mechanics

Verlag: Springer International Publishing

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Abstract

In this paper we focus on the station keeping around an equilibrium point for a solar sail in the Earth-Sun system. The strategies that we present use the information on the dynamics of the system to derive the required changes on the sail orientation to remain close to an equilibrium point for a long time. We start by describing the main ideas when we consider the RTBP with the effect of the SRP as a model. Then we will see how to extend these ideas when we consider a more complex dynamical model which includes the gravitational attraction of the main bodies in the solar system. One of the goals of the paper is to check the robustness of the algorithms in a more realistic setting and study the effect of errors both in the position determination of the probe and in the orientation of the sail.

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Literatur
1.
Zurück zum Zitat Aliasi G, Mengali G, Quarta A (2011) Artificial equilibrium points for a generalized sail in the circular restricted three-body problem. Celest Mech Dyn Astron 110:343–368MathSciNetCrossRefMATH Aliasi G, Mengali G, Quarta A (2011) Artificial equilibrium points for a generalized sail in the circular restricted three-body problem. Celest Mech Dyn Astron 110:343–368MathSciNetCrossRefMATH
2.
Zurück zum Zitat Ceriotti M, McInnes C (2010) A near term pole-sitter using hybrid solar sail propulsion. In: Kezerashvili R (ed) Proceedings of the second international symposium on solar sailing, pp 163–169 Ceriotti M, McInnes C (2010) A near term pole-sitter using hybrid solar sail propulsion. In: Kezerashvili R (ed) Proceedings of the second international symposium on solar sailing, pp 163–169
3.
Zurück zum Zitat Ceriotti M, McInnes C (2012) Natural and sail-displaced doubly-symmetric lagrange point orbits for polar coverage. Celest Mech Dyn Astron 114(1–2):151–180MathSciNetCrossRef Ceriotti M, McInnes C (2012) Natural and sail-displaced doubly-symmetric lagrange point orbits for polar coverage. Celest Mech Dyn Astron 114(1–2):151–180MathSciNetCrossRef
4.
Zurück zum Zitat Crawford J (1991) Introduction to bifurcation theory. Rev Modern Phys 64 (1991) Crawford J (1991) Introduction to bifurcation theory. Rev Modern Phys 64 (1991)
5.
Zurück zum Zitat Dachwald B, Seboldt W, Macdonald M, Mengali G, Quarta A, McInnes C, Rios-Reyes L, Scheeres D, Wie B, Görlich M, et al (2005) Potential solar sail degradation effects on trajectory and attitude control. In: AIAA guidance, navigation, and control conference and exhibit, vol 6172 Dachwald B, Seboldt W, Macdonald M, Mengali G, Quarta A, McInnes C, Rios-Reyes L, Scheeres D, Wie B, Görlich M, et al (2005) Potential solar sail degradation effects on trajectory and attitude control. In: AIAA guidance, navigation, and control conference and exhibit, vol 6172
6.
Zurück zum Zitat Farrés A (2009) Contribution to the dynamics of a solar sail in the earth-sun system. PhD thesis, Universitat de Barcelona Farrés A (2009) Contribution to the dynamics of a solar sail in the earth-sun system. PhD thesis, Universitat de Barcelona
7.
Zurück zum Zitat Farrés A, Jorba À (2008) Dynamical system approach for the station keeping of a solar sail. J Astronaut Sci 58(2):199–230CrossRef Farrés A, Jorba À (2008) Dynamical system approach for the station keeping of a solar sail. J Astronaut Sci 58(2):199–230CrossRef
8.
Zurück zum Zitat Farrés A, Jorba À (2008) Solar sail surfing along families of equilibrium points. Acta Astronaut 63:249–257CrossRef Farrés A, Jorba À (2008) Solar sail surfing along families of equilibrium points. Acta Astronaut 63:249–257CrossRef
9.
Zurück zum Zitat Farrés A. Jorba À (2010) On the high order approximation of the centre manifold for ODEs. Discrete Contin Dyn Syst Ser B (DCDS-B), 14:977–1000 Farrés A. Jorba À (2010) On the high order approximation of the centre manifold for ODEs. Discrete Contin Dyn Syst Ser B (DCDS-B), 14:977–1000
10.
Zurück zum Zitat Farrés A, Jorba À (2010) Periodic and quasi-periodic motions of a solar sail around the family \({SL}_1\) on the sun-earth system. Celest Mech Dyn Astron 107:233–253CrossRefMATH Farrés A, Jorba À (2010) Periodic and quasi-periodic motions of a solar sail around the family \({SL}_1\) on the sun-earth system. Celest Mech Dyn Astron 107:233–253CrossRefMATH
11.
Zurück zum Zitat Farrés A, Jorba À (2010) Sailing between the earth and sun. In: Kezerashvili R (ed) Proceedings of the second international symposium on solar sailing, pp 177–182 Farrés A, Jorba À (2010) Sailing between the earth and sun. In: Kezerashvili R (ed) Proceedings of the second international symposium on solar sailing, pp 177–182
13.
Zurück zum Zitat Farrés A, Jorba À (2014) Station keeping of a solar sail around a halo orbit. Acta Astronaut 94(1):527–539CrossRef Farrés A, Jorba À (2014) Station keeping of a solar sail around a halo orbit. Acta Astronaut 94(1):527–539CrossRef
14.
Zurück zum Zitat Farrés A, Matteo C (2012) Solar sail station keeping of high-amplitude vertical lyapunov orbits in the sun-earth system. In: Proceedings of the 63rd international astronautical congress, naples, campania, Italy Farrés A, Matteo C (2012) Solar sail station keeping of high-amplitude vertical lyapunov orbits in the sun-earth system. In: Proceedings of the 63rd international astronautical congress, naples, campania, Italy
15.
Zurück zum Zitat Forward RL (1990) Statite: a spacecraft that does not orbit. J Spacecraft 28(5):606–611CrossRef Forward RL (1990) Statite: a spacecraft that does not orbit. J Spacecraft 28(5):606–611CrossRef
16.
Zurück zum Zitat Gómez G, Jorba À, Masdemont J, Simó C (2001) Dynamics and mission design near libration points—volume iii: advanced methods for collinear points, volume 4 of world scientific monograph series in mathematics. world scientific Gómez G, Jorba À, Masdemont J, Simó C (2001) Dynamics and mission design near libration points—volume iii: advanced methods for collinear points, volume 4 of world scientific monograph series in mathematics. world scientific
17.
Zurück zum Zitat Gómez G, Jorba À, Masdemont J, Simó C (2001) Dynamics and mission design near libration points—volume iv: advanced methods for triangular points, volume 5 of world scientific monograph series in mathematics. world scientific Gómez G, Jorba À, Masdemont J, Simó C (2001) Dynamics and mission design near libration points—volume iv: advanced methods for triangular points, volume 5 of world scientific monograph series in mathematics. world scientific
18.
Zurück zum Zitat Gómez G, Llibre J, Martínez R, Simó C (2001) Dynamics and mission design near libration points—volume i: fundamentals: the case of collinear libration points, volume 2 of world scientific monograph series in mathematics. world scientific Gómez G, Llibre J, Martínez R, Simó C (2001) Dynamics and mission design near libration points—volume i: fundamentals: the case of collinear libration points, volume 2 of world scientific monograph series in mathematics. world scientific
19.
Zurück zum Zitat Heiligers J, Diedrich B, Derbes B, McInnes C (2008) Sunjammer : preliminary end-to-end mission design. In: Proceedings of the AIAA/AAS astrodynamics specialist conference, vol 2014 Heiligers J, Diedrich B, Derbes B, McInnes C (2008) Sunjammer : preliminary end-to-end mission design. In: Proceedings of the AIAA/AAS astrodynamics specialist conference, vol 2014
20.
23.
Zurück zum Zitat Lawrence D, Piggott S (2004) Solar sailing trajectory control for Sub-L1 stationkeeping. AIAA 2004–5014 Lawrence D, Piggott S (2004) Solar sailing trajectory control for Sub-L1 stationkeeping. AIAA 2004–5014
24.
Zurück zum Zitat Lisano M (2005) Solar sail transfer trajectory design and station keeping control for missions to Sub-L1 equilibrium region. In: 15th AAS/AIAA space flight mechanics conferece, colorado (2005). AAS paper 05–219 Lisano M (2005) Solar sail transfer trajectory design and station keeping control for missions to Sub-L1 equilibrium region. In: 15th AAS/AIAA space flight mechanics conferece, colorado (2005). AAS paper 05–219
25.
Zurück zum Zitat Macdonald M, McInnes C (2004) A near-term road map for solar sailing. In: 55th international astronautical congress, Vancouver, Canada Macdonald M, McInnes C (2004) A near-term road map for solar sailing. In: 55th international astronautical congress, Vancouver, Canada
27.
Zurück zum Zitat McInnes C (1999) Solar sailing: technology. Dynamics and Mission Applications, Springer-PraxisCrossRef McInnes C (1999) Solar sailing: technology. Dynamics and Mission Applications, Springer-PraxisCrossRef
28.
Zurück zum Zitat McInnes C, McDonald A, Simmons J, MacDonald E (1994) Solar sail parking in restricted three-body system. J Guidance Control Dyn 17(2):399–406CrossRefMATH McInnes C, McDonald A, Simmons J, MacDonald E (1994) Solar sail parking in restricted three-body system. J Guidance Control Dyn 17(2):399–406CrossRefMATH
29.
Zurück zum Zitat McKay R, Macdonald M, Biggs J, McInnes C (2011) Survey of highly non-keplerian orbits with low-thrust propulsion. J Guidance Control Dyn 34(3):645–666. doi:10.2514/1.52133 CrossRef McKay R, Macdonald M, Biggs J, McInnes C (2011) Survey of highly non-keplerian orbits with low-thrust propulsion. J Guidance Control Dyn 34(3):645–666. doi:10.​2514/​1.​52133 CrossRef
30.
Zurück zum Zitat Rios-Reyes L, Scheeres D (2005) Robust solar sail trajectory control for large pre-launch modelling errors. In: 2005 AIAA guidance, navigation and control conference Rios-Reyes L, Scheeres D (2005) Robust solar sail trajectory control for large pre-launch modelling errors. In: 2005 AIAA guidance, navigation and control conference
31.
Zurück zum Zitat Sevryuki M (1986) Reversible systems. Springer, Berlin Sevryuki M (1986) Reversible systems. Springer, Berlin
32.
Zurück zum Zitat Szebehely V (1967) Theory of orbits. Academic Press, The restricted problem of three bodies Szebehely V (1967) Theory of orbits. Academic Press, The restricted problem of three bodies
33.
Zurück zum Zitat Yen C-WL (2004) Solar sail geostorm warning mission design. In: 14th AAS/AIAA space flight mechanics conference, Hawaii Yen C-WL (2004) Solar sail geostorm warning mission design. In: 14th AAS/AIAA space flight mechanics conference, Hawaii
Metadaten
Titel
Station Keeping Strategies for a Solar Sail in the Solar System
verfasst von
Ariadna Farrés
Àngel Jorba
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-27464-5_3

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