Surface force modeling for precision orbit determination
暂无分享,去创建一个
[1] Paolo Farinella,et al. Optical properties of the Earth's surface and long‐term perturbations of LAGEOS's semimajor axis , 1992 .
[2] George W. Rosborough,et al. Prediction of radiant energy forces on the TOPEX/POSEIDON spacecraft , 1992 .
[3] H. Fliegel,et al. Global Positioning System Radiation Force Model for geodetic applications , 1992 .
[4] Remko Scharroo,et al. On the along-track acceleration of the LAGEOS satellite , 1991 .
[5] P. Farinella,et al. Effects of thermal thrust on the node and inclination of LAGEOS , 1990 .
[6] D. Rubincam,et al. Drag on the LAGEOS satellite , 1990 .
[7] Luciano Iess,et al. The rotation of LAGEOS , 1990 .
[8] P. Farinella,et al. Orbital effects of LAGEOS seasons and eclipses , 1989 .
[9] D. Rubincam. Yarkovsky Thermal Drag on LAGEOS , 1988 .
[10] Timothy L. Killeen,et al. Empirical global model of upper thermosphere winds based on atmosphere and dynamics explorer satellite data , 1988 .
[11] T. Killeen,et al. Thermosphere dynamics: Contributions from the first 5 years of the Dynamics Explorer Program , 1988 .
[12] V. R. Taylor,et al. Earth anisotropic reflection and the orbit of LAGEOS , 1987 .
[13] A. Hedin. MSIS‐86 Thermospheric Model , 1987 .
[14] D. Rubincam,et al. LAGEOS orbit decay due to infrared radiation from Earth , 1987 .
[15] D. Rubincam,et al. The orbit of LAGEOS and solar eclipses , 1985 .
[16] F. Mignard,et al. Reassessment of the charge and neutral drag of LAGEOS and its geophysical implications , 1985 .
[17] Jeffrey M. Forbes,et al. Thermospheric winds from the satellite electrostatic triaxial accelerometer system , 1985 .
[18] D. Rubincam,et al. Earth albedo and the orbit of Lageos , 1985 .
[19] A. Hedin,et al. A revised thermospheric model based on mass spectrometer and incoherent scatter data - MSIS-83 , 1983 .
[20] F. Barlier,et al. A point of view on semi-empirical thermospheric models , 1983 .
[21] Rachel T. Pinker,et al. Estimating the solar zenith dependence of the clear‐sky planetary albedo for land surfaces from the GOES satellite , 1983 .
[22] D. Rubincam,et al. On the secular decrease in the semimajor axis of Lageos's orbit , 1980 .
[23] D. Rubincam. Atmospheric drag as the cause of the secular decrease in the semimajor axis of Lageos's orbit , 1980 .
[24] J. Burns,et al. Radiation forces on small particles in the solar system , 1979 .
[25] U. Laux,et al. Longitudinal variations in thermospheric composition under geomagnetically quiet conditions , 1979 .
[26] F. Barlier,et al. Comparisons between varions semi-empirical thermospheric models of the terrestrial atmosphere , 1979 .
[27] D. Lautman. Perturbations of a close-Earth satellite due to sunlight diffusely reflected from the Earth , 1977 .
[28] Carl A. Reber,et al. A global thermospheric model based on mass spectrometer and incoherent scatter data MSIS, 2. Composition , 1977 .
[29] Joseph E. Salah,et al. A global thermospheric model based on mass spectrometer and incoherent scatter data MSIS, 1. N2 density and temperature , 1977 .
[30] L. Jacchia,et al. Thermospheric temperature, density, and composition: New models , 1977 .
[31] D. King-hele,et al. Upper-atmosphere zonal winds from satellite orbit analysis , 1976, Nature.
[32] K. Aksnes,et al. Short-period and long-period perturbations of a spherical satellite due to direct solar radiation , 1976 .
[33] K. Moe,et al. On fundamental problems in the deduction of atmospheric densities from satellite drag , 1975 .
[34] Charles E. Roberts. An analytic model for upper atmosphere densities based upon Jacchia's 1970 models , 1971 .
[35] L. Jacchia. Revised static models of the thermosphere and exosphere with empirical temperature profiles , 1971 .
[36] I. Harris,et al. THEORETICAL MODELS FOR THE SOLAR-CYCLE VARIATION OF THE UPPER ATMOSPHERE , 1962 .
[37] Robert Bryant,et al. THE EFFECT OF SOLAR RADIATION PRESSURE ON THE MOTION OF AN ARTIFICIAL SATELLITE , 1961 .
[38] D. Muhleman,et al. Observed Solar Pressure Perturbations of Echo I , 1960, Science.
[39] Peter Musen,et al. The Influence of the Solar Radiation Pressure on the Motion of an Artificial Satellite , 1960 .
[40] I I Shapiro,et al. Effects of Solar Radiation Pressure on Earth Satellite Orbits , 1960, Science.
[41] P. G. Antreasian,et al. Modeling radiation forces acting on satellites for precision orbit determination , 1992 .
[42] P. Moore,et al. Atmospheric density parameters from Seasat laser ranging , 1991 .
[43] P. Longaretti,et al. A new treatment of the albedo radiation pressure in the case of a uniform albedo and of a spherical satellite , 1990 .
[44] B. Tapley,et al. Earth radiation pressure effects on satellites , 1988 .
[45] J. Lafontaine,et al. An analytic version of Jacchia's 1977 model atmosphere , 1983 .
[46] A. Milani,et al. Orbital perturbations due to radiation pressure for a spacecraft of complex shape , 1983 .
[47] G. Kockarts. Some recent advances in thermospheric models , 1981 .
[48] Carl A. Reber,et al. Global Model of Longitude/UT Variations in Thermospheric Composition and Temperature Based on Mass Spectrometer Data (Paper 8A0781) , 1979 .
[49] L. Sehnal. The earth albedo model in spherical harmonics , 1979 .
[50] A. Hedin,et al. Empirical model of global thermospheric temperature and composition based on data from the OGO-6 quadrupole mass spectrometer , 1974 .
[51] P. E. Ehl'Yasberg,et al. Upper atmosphere density determination from the Cosmos satellite deceleration results. , 1972 .
[52] L. Sehnal. Radiation Pressure Effects in the Motion of Artificial Satellites , 1970 .
[53] P. Lala,et al. The Earth's Shadowing Effects in the Short-Periodic Perturbations of Satellite Orbits , 1970 .