Analytical lifetime studies of a close-lunar satellite
Lunar gravitational effect on lifetime of close lunar satellites
SEARCH · Search NASA
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Lunar gravitational effect on lifetime of close lunar satellites
Lunar satellite orbit determination, using doppler data, optical data and range and range rate data
Lunar mass and gravitational field determined from lunar satellite dynamics, using potential function in terms of spherical harmonics
Lunar mass and gravitational fields determined from lunar satellite dynamics
Lunar satellite motion semianalytic solution, considering perturbative effects due to gravitational fields, solar radiation pressure and libration
Tracking geometry and dynamics of lunar satellite, estimating orbital elements and lunar gravitational field parameters through earth based range and range rate observations
Sensitivity of short period tracking data from lunar satellite to zonal and sectorial harmonics of lunar gravitational potential
Tracking geometry and dynamics of lunar satellite, estimating orbital elements and lunar gravitational field parameters through Earth- based range and range rate observations
Lunar satellite orbit classification, deriving motion integrals from equations of motion
Approximate method for predicting lunar satellite lifetimes and application to lunar orbit mission analysis
Approximate method for predicting lunar satellite lifetimes and application to lunar orbit mission analysis
Effects of lunar physical librations on orbital elements of lunar satellite
Classification of lunar satellite orbits perturbed by earth and by nonsphericity of lunar gravitational field
Lunar satellite orbit calculation to determine time in umbra and penumbra
Semianalytic theory for lunar satellite motion including perturbative effects
Motion of near lunar satellite in initially circular orbit analyzed by integrating equations for time rates of change of orbit elements
Motion of near lunar satellite in initially circular orbit analyzed by integrating equations for time rates of change of orbit elements
Matrix error and sensitivity analysis for lunar satellite orbits