Publication | Open Access
A high‐quality global gravity field model from CHAMP GPS tracking data and accelerometry (EIGEN‐1S)
277
Citations
6
References
2002
Year
EngineeringGlobal Navigation Satellite SystemPrecision NavigationEarth ScienceGeophysicsOrbit DeterminationGeospace PhysicsSatellite MeasurementChamp GpsAccelerometer DataSatellite Orbit PerturbationsGeodesyAstrodynamicsGravity Field ModelsGravity FieldSatellite Navigation SystemsAerospace EngineeringRemote SensingSpace GeodesyGravitation Theory
Using three months of GPS satellite‐to‐satellite tracking and accelerometer data of the CHAMP satellite mission, a new long‐wavelength global gravity field model, called EIGEN‐1S, has been prepared in a joint German‐French effort. The solution is derived solely from analysis of satellite orbit perturbations, i.e. independent of oceanic and continental surface gravity data. EIGEN‐1S results in a geoid with an approximation error of about 20 cm in terms of 5 × 5 degree block mean values, which is an improvement of more than a factor of 2 compared to pre‐CHAMP satellite‐only gravity field models. This impressive progress is a result of CHAMP's tailored orbit characteristics and dedicated instrumentation, providing continuous tracking and direct on‐orbit measurements of non‐gravitational satellite accelerations.
| Year | Citations | |
|---|---|---|
Page 1
Page 1