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Chapter 2 - Orbit Dynamics

Published online by Cambridge University Press:  18 December 2014

Marcel J. Sidi
Affiliation:
Israel Aircraft Industries Ltd
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Spacecraft Dynamics and Control
A Practical Engineering Approach
, pp. 8 - 63
Publisher: Cambridge University Press
Print publication year: 1997

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References

Alby, F. (1983), “Les Perturbations de l'Orbite Géostationaire,” in The Motion of the Satellite, Lectures and Exercises on Space Mechanics. Toulouse, France: Cépaduès-Éditions, pp. 569–611.Google Scholar
Balmino, G. (1980), “Le Mouvement Elliptique Perturbé,” in Le Mouvement du Véhicule Spatial en Orbite. Toulouse, France: Centre National d'Études Spatiales, pp. 59–84.Google Scholar
Bate, R. R., Mueller, D. D., and White, J. E. (1971), Fundamentals of Astrodynamics. New York: Dover.Google Scholar
Battin, R. H. (1990), An Introduction to the Mathematics and Methods of Astrodynamics. Washington, DC: AIAA.Google Scholar
Bernard, J. (1983), “Mouvement Keplerien et Perturbé,” in The Motion of the Satellite, Lectures and Exercises on Space Mechanics. Toulouse, France: Cépaduès-Éditions, pp. 25–86.
Borderies, N. (1980), “Les Perturbation d'Orbites: les Effets,” in Le Mouvement du Véhicule Spatial en Orbite. Toulouse, France: Centre National d'Études Spatiales, pp. 131–51.Google Scholar
Breakwell, J., and Roberson, R. (1970), “Orbital and Attitude Dynamics,”Lecture notes, Stanford University.
Campan, G. (1983), “Les Perturbations d'Orbite,” in The Motion of the Satellite, Lectures and Exercises on Space Mechanics. Toulouse, France: Cépaduès-Éditions, pp. 129–57.Google Scholar
Chobotov, V. A. (1991), Orbital Mechanics. Washington, DC: AIAA.Google Scholar
Deutsch, R. (1963), Orbital Dynamics of Space Vehicles. Englewood Cliffs, NJ: Prentice-Hall.Google Scholar
Escobal, P. R. (1965), Methods of Orbit Determination. Malabar, FL: Krieger.Google Scholar
Kaplan, M. H. (1976), Modern Spacecraft Dynamics and Control. New York: Wiley.Google Scholar
Legendre, P. (1980), “Mantien a Poste des Satellites Géostationaires: Stratégie des Corrections d'Orbite,” in Le Mouvement du Véhicule Spatial en Orbite. Toulouse, France: Centre National d'Études Spatiales, pp. 583–609.Google Scholar
Pocha, J. J. (1987), An Introduction to Mission Design for Geostationary Satellites, Dordrecht: Reidel.CrossRefGoogle Scholar
Pritchard, L. W., and Sciulli, A. J. (1986), Satellite Communication Systems Engineering, Englewood Cliffs, NJ: Prentice-Hall.Google Scholar
Soop, E. M. (1983), Introduction to Geostationary Orbits. Paris: European Space Agency.Google Scholar
Thomson, W. T. (1986), Introduction to Space Dynamics. New York: Dover.Google Scholar
Wertz, J. R. (1978), Spacecraft Attitude Determination and Control. Dordrecht: Reidel.CrossRefGoogle Scholar

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  • Orbit Dynamics
  • Marcel J. Sidi, Israel Aircraft Industries Ltd
  • Book: Spacecraft Dynamics and Control
  • Online publication: 18 December 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511815652.003
Available formats
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  • Orbit Dynamics
  • Marcel J. Sidi, Israel Aircraft Industries Ltd
  • Book: Spacecraft Dynamics and Control
  • Online publication: 18 December 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511815652.003
Available formats
×

Save book to Google Drive

To save content items to your account, please confirm that you agree to abide by our usage policies. If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. Find out more about saving content to Google Drive.

  • Orbit Dynamics
  • Marcel J. Sidi, Israel Aircraft Industries Ltd
  • Book: Spacecraft Dynamics and Control
  • Online publication: 18 December 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511815652.003
Available formats
×