Analytical Solution for Formation Flying Problem near Equatorial-Circular Reference Orbit
- 1 King Abdul-Aziz University, Jeddah, Saudi Arabia
- 2 National Research Institute of Astronomy and Geophysics, Helwan, Cairo, Egypt
Abstract
The relative motion between multiple satellites is a developed technique with many applications. Formation-flying missions use the relative motion dynamics in their design. In this work, the motion in invariant relative orbits is considered under the effects of second-order zonal harmonics in an equatorial orbit. The Hamiltonian framework is used to formulate the problem. All the possible conditions of the invariant relative motion are obtained with different inclinations of the follower satellite orbits. These second-order conditions warrantee the drift rates keeping two, or more, neighboring orbits from drifting apart. The conditions have been modeled. All the possibilities of choosing mean elements of the leader satellite orbit and differences in momenta between leader and follower satellites’ orbits are presented.
- Hughes, S.P. (1999) Formation Flying Performance Measures for Earth-Pointing Missions. MSc Thesis, Blacksburg, Virginia.
- Clohessy, W.H. and Wiltshire, R.S. (1960) Terminal Guidance System for Satellite Rendezvous. Journal of the Aerospace Sciences, 27, 653-658. https://doi.org/10.2514/8.8704
- Tschauner, J. and Hempel, P. (1965) Rendezvous Zueinem in Elliptischer Bahn Umlaufenden Ziel. Acta Astronautica, 11, 104-109.
- Schaub, H. and Alfriend, K. (2001) J2 Invariant Relative Orbits for Spacecraft Formations. Celestial Mechanics and Dynamical Astronomy, 79, 77-95. https://doi.org/10.1023/A:1011161811472
- Abd El-Salam, F.A., El-Tohamy, I.A., Ahmed, M.K., Rahoma, W.A. and Rassem, M.A. (2006) Invariant Relative Orbits for Satellite Constellations: A Second Order Theory. Applied Mathematics and Computation, 181, 6-20. https://doi.org/10.1016/j.amc.2006.01.004
- Li, X. and Li, J. (2005) Study on Relative Orbital Configuration in Satellite Formation Flying. Acta Mechanica Sinica, 21, 87-94. https://doi.org/10.1007/s10409-004-0009-3
- Abd El-Salam, F.A. and El-Saftawy, M.I. (2012) Second Order Constraints in the Theory of Invariant Relative Orbits Including Relativistic and Direct Solar Radiation Pressure Effects. Indian Journal of Science and Technology, 5, 1-14.
- Rahoma, W.A. (2013) Lunisolar Invariant Relative Satellite Orbits. American Journal of Applied Sciences, 10, 307-312. https://doi.org/10.3844/ajassp.2013.307.312
- Kamel, A.A. (1969) Expansion Formulae in Canonical Transformations Depending on a Small Parameter. Celestial Mechanics, 1, 190-199. https://doi.org/10.1007/BF01228838
- El-Saftawy, M.I., Ahmed, M.K.M. and Helali, Y.E. (1998) The Effect of Direct Solar Radiation Pressure on a Spacecraft of Complex Shape, II. Astrophysics and Space Science, 259, 151-171. https://doi.org/10.1023/A:1001577425093