The geodetic twin satellite mission GRACE delivers gravity field models of the Earth of unprecedented accuracy. However, the originally defined mission baseline is not (quite) reached. Among others, deficiencies in the gravity field sensor system or the
related signal processing could be responsible for the degraded performance. In this work the GRACE gravity field sensor system is subject to an integrated sensor analysis. First, models of the satellite environment are derived, including a comparative analysis of different air drag models. In the second part mathematical models
of the individual elements of the gravity field sensor system are analyzed. The third part consists of the analysis of the raw instrument data. Finally the processing of the raw instrument data to the level that is used for the gravity field determination is investigated.
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The geodetic twin satellite mission GRACE delivers gravity field models of the Earth of unprecedented accuracy. However, the originally defined mission baseline is not (quite) reached. Among others, deficiencies in the gravity field sensor system or the
related signal processing could be responsible for the degraded performance. In this work the GRACE gravity field sensor system is subject to an integrated sensor analysis. First, models of the satellite environment are derived, including a comp...
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