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Bibliography

1
Albee, A. L., Mars Global Surveyor Mission: Status and Plan for Attaining the Circular Mapping Orbit, EOS Trans. Am. Geophys. Un., 79, 1998.

2
Esposito, P. B., V. Alwar, S. Demcak, E. Graat, M. Johnston, and R. Mase, Mars Global Surveyor: Navigation and Aerobraking at Mars, AAS Paper 98-384, 1998.

3
Zuber, M. T., et al., The Mars Observer Laser Altimeter Investigation, J. Geophys. Res., 97, 7781-7797, 1992.

4
Moyer, T. D., Changes to the ODP and ODE for processing X-Band uplink data, Jet Propulsion Lab. Eng. Mem., 314-430, 1987.

5
Moyer, T. D., REGRES Modifications for processing Block V exciter range observables, Jet Propulsion Lab. Eng. Mem., 314, 5-1795, 1995.

6
Lemoine, F. G., et al. Precise Orbit Determination for Mars Global Surveyor During Hiatus and SPO, AAS Paper 99-147, Spaceflight Mechanics 1999, edited by R. H. Bishop, D. L. Mackinson, R. D. Culp, and M. J. Evans, 649-666, 1999.

7
Sjogren, W. L., Jet Propulsion Laboratory, Personal communications, April 1999.

8
Pavlis, D. E., S. Luo, P. Dahiroc, J. J. McCarthy, and S. B. Luthcke, GEODYN operations manuals, five volumes, Raytheon ITSS contractor report, March 26, 1999.

9
Standish, E. M., X X Newhall, J. G. Williams, and W. M. Folkner, JPL Planetary and Lunar Ephemerides, DE403/LE403, JPL Interoffice Memorandum 314.10-127, Jet Propulsion Laboratory, Pasadena, California, May 22, 1995.

10
Kolyuka, Y. et al. International project Phobos, experiment: Celestial mechanics, Planet. Space Sci., 39, 349-354, 1991.

11
Williams, B. G., et al.,Improved determination of the Phobos and Deimos masses from Viking, Fall meeting of the American Geophysical Union, G21-A-11, San Francisco, December 1981.

12
Jacobson, R. A., Mar033-5 Phobos and Deimos ephemerides description, Jet Propulsion Laboratory, Sept. 29, 1997.

13
Lemoine, F. G., The Dynamics of Orbiting Satellites and Gravity Model Development, Ph.D. Thesis, The University of Colorado at Boulder, Boulder, Colorado, 1992.

14
Knocke, P. C., Ries, J. C., and B. D. Tapley, Earth radiation pressure effects on satellites, Proceedings of the AIAA/AAS Astrodynamics Conference, Minneapolis, Minnesota, AIAA Paper 88-4292, 577-588, August 1988.

15
Stewart, A. I. F., Revised time dependent model of the Martian atmosphere for use in lifetime and sustenance studies, Final report, JPL PO NQ-802429, Laboratory for Atmospheric and Space Physics, The University of Colorado, March 26, 1987.

16
Kaula, W. M., Theory of Satellite Geodesy, Blaisdell, Waltham, Mass., 1966.

17
Davies, M. E., et al., Report of the IAU/IAG/COSPAR working group on cartographic coordinates and rotational elements of the planets and satellites: 1991, Celestial Mechanics and Dyn. Astr. 53, 377-397, 1992.

18
Rowlands, D. D. et al., Space Shuttle precision orbit determination in support of SLA-1 using TDRSS and GPS Tracking Data, J. Astronautical Sciences, 45(1), 113-129, January-March 1999.

19
Marshall, J. A. M., and S. B. Luthcke, Radiative Force Model Performance for TOPEXPoseidon Precision Orbit Determination, J. Astronautical Sciences 42(2), 229-246, 1994.

20
Luthcke, S. B., J. A. Marshall, S. C. Rowton, K. E. Rachlin, C. M. Cox, and R. G. Williamson, Enhanced radiative force modelling of the Tracking and Data Relay Satellites, J. Astronautical Sciences 45(3), 349-370, 1997.

21
Lemoine, F.G., D. D. Rowlands, N. P. Zelensky, S. B. Luthcke, C. M. Cox, and G. C. Marr, Precise orbit determination for the GEOSAT Follow-on spacecraft, 1999 Flight Mechanics Symposium, NASA/CP-1999-209235, NASA Goddard Space Flight Center, 495-508, May 1999.

22
Michael Griffin, Lockheed Martin Astronautics, Denver, Personal communications, January 1999.

23
P. Tracadas, Massachusetts Institute of Technology, Personal communications, January 1999.

24
Esposito, P. B., Mars Global Surveyor: Navigation Plan, JPL Document D-12002, Jet Propulsion Laboratory, Pasadena, California August 1996.

25
SOLVE program guide to user input by R. E. Ullman, March 1993, Revised by John J. McCarthy for NASA GSFC, Code 926, Space Geodesy Laboratory; Raytheon ITSS Contractor report, Greenbelt, Maryland, August 1999.

26
Schwartz, K. P., Least squares collocation for large systems, Bull. Geod. Sci. 35, 309-324, 1976.

27
Schwartz, K. P., "On the application of least-squares collocation models to physical geodesy," in Approximation Methods in Geodesy, edited by H. Moritz and H. Sunkel, 89-116, H. Wichmann-Verlag, Karlsruhe, Germany, 1978.

28
Rowlands, D. D., D. E. Pavlis, G. A. Neumann, and S. B. Luthcke, The use of laser altimeter in the orbit and attitude determination of Mars Global Surveyor, Geophys. Res. Lett., 26(9), 1191-1194, May 1, 1999.

29
Smith, D. E., F. J. Lerch, R. S. Nerem, M. T. Zuber, G. B. Patel, S. K. Fricke, and F. G. Lemoine, An improved gravity model for Mars: Goddard Mars Model 1, J. Geophys. Res., 98(E11), 20871-20889, 1993.

30
Konopliv, A. S., and W. L. Sjogren, The JPL mars gravity field, Mars50c, based upon Viking and Mariner 9 Doppler tracking data, JPL Publication 95-5, Jet Propulsion Laboratory, Pasadena, California, February 1995.

31
Lerch, F. J., Optimum data weighting and error calibration for estimation of gravitational parameters, Bull. Geod. 65, 44-52, 1991.

32
Lemoine, F. G., et al., The Development of the Joint NASA GSFC and the NIMA Geopotential Model EGM96, NASA/TP-1998-206861, NASA Goddard Space Flight Center, Greenbelt, Maryland, July 1998.

33
Mars Global Surveyor Project: Mission Plan, Final Version, Rev. B (MGS 542-405), edited by Wayne Lee, Jet Propulsion Laboratory, Pasadena, California, November 1996.



Shelley Rowton
1999-10-20