Have a personal or library account? Click to login
Effects Of Direct And Indirect Solar Radiation Pressure In Orbital Parameters Of GPS Satelittes Cover

Effects Of Direct And Indirect Solar Radiation Pressure In Orbital Parameters Of GPS Satelittes

By: Sergiu Lupu and  Eugen Zaharescu  
Open Access
|Oct 2015

References

  1. [1] D. Brouwer, G.M. Clemence. (1961). Methods of Celestial Mechanics, Academic Press, New York.
  2. [2] Vallado, D. A. (1997). Fundamentals of Astrodynamics and Applications”, McGraw-Hill, New York.
  3. [3] B. Hofmann-Wellenhof, et al. (1994). Global Positioning System - Theory and Practice, New York.10.1007/978-3-7091-3311-8
  4. [4] G. Beutler. (2005). Methods of Celestial Mechanics”, I & II. Springer, Germany.
  5. [5] Carlos Renato Huaura Solórzano and Antonio Fernando Bertachini de Almeida Prado. (2013). A Comparison of Averaged and Full Models to Study the Third-Body Perturbation. The Scientific World Journal.
  6. [6] A. Milani, A.M. Nobili, P. Farinella. (1987). Non-graviational Perturbations and Satellite Geodesy. Adam Hilger.
  7. [7] S. Lupu. (2011). Elemente de dinamica sistemului global de pozitionare NAVSTAR - GPS. Academia Navala Mircea cel Batran, Constanta.
  8. [8] G. Seeber. (1993). Satellite Geodesy, Foundation, methods and applications. Walter de Gruyter, Berlin.
  9. [9] N. Borderies, PY. Longaretti. (1999). A new treatment of the albedo radiation pressure in the case of a uniform albedo and of a spherical satellite. Celestial Mechanics and Dynamical Astronomy.
  10. [10] A. J Chapman. (1984). Heat Transfer. Macmillan.
  11. [11] J. Qiu, PR Goode, E. Pallé, V. Yurchyshyn, J. Hickey, P. Montañes Rodriguez, MC. Chu, E. Kolbe, CT. Brown, SE. Koonin. (2003). Earth-shine and Earth’s albedo: 1. Earthshine observations and measurements of the lunar phase function for accurate measurements of the Earth’s Bond albedo. Journal of Geophysical Research.
  12. [12] F W. Taylor. (2005). Elementary Climate Physics. Oxford University Press, United Kingdom.
  13. [13] C. Frolich, J. Lean. (1998). The Sun’s Total Irradiance: Cycles, Trends and Related Climate Change Uncertainties since 1976. Geophysical Research Letters, vol. 25, no. 23, pp. 4377-4380.10.1029/1998GL900157
  14. [14] http://www.iers.org
  15. [15] Rodriguez-Solano, C. J.; Hugentobler, U.; Steigenberger, P.; Lutz, S. (2012). Impact of Earth radiation pressure on GPS position estimates. Journal of Geodesy, Springer, vol. 86, no. 5, pp. 309-317.10.1007/s00190-011-0517-4
  16. [16] H. Fliegel, T. Gallini, E. Swift. (1992). Global Positioning System Radiation Force Model for Geodetic Applications. Journal of Geophysical Research, pp. 559-568.10.1029/91JB02564
  17. [17] H. Fliegel, T. Gallini. (1996). Solar Force Modelling of Block IIR Global Positioning System satellites. Journal of Spacecraft and Rockets, pp. 863-866.10.2514/3.26851
DOI: https://doi.org/10.2478/auom-2014-0039 | Journal eISSN: 1844-0835 | Journal ISSN: 1224-1784
Language: English
Page range: 141 - 150
Submitted on: Jun 1, 2013
Accepted on: Nov 1, 2013
Published on: Oct 20, 2015
Published by: Ovidius University of Constanta
In partnership with: Paradigm Publishing Services
Publication frequency: 3 issues per year

© 2015 Sergiu Lupu, Eugen Zaharescu, published by Ovidius University of Constanta
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.