Dr. Srinivas Bettadpur
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STUDENTS
The list of my students since 2010, and links to their theses, should give you a good idea of the scope of work that will keep my group busy for the next decade or more.
PhD (Current Students)
PhD (Recent Graduates)
- (Vassallo, C. – 2024, on the use of machine learning for drought characterization from total-water storage data).
- (Jacob, G. – 2024, on the use of Total Variation for estimation of satellite gravity fields)
- (Krichman, B. – 2023, on the intercomparison of water balance methods using satellite gravity data)
- (McCullough, C. - 2017, on the uncertainty quantification of satellite gravity fields)
- (Sakumura, C – 2016 on GRACE data assimilation in land surface models)
- (Bonin, J – 2010 (co-supervised) on high-frequency information content in GRACE data)
- (Save, H – 2009 (co-supervised) on the regularization of the gravity field estimation problem)
MS
- (Rosen, M – 2021 – Hybrid SST and quantum gravity gradiometer architectures for spaceborne gravity measurements))
- (Smith, M – 2019 – use of accelerations for gravity field estimation)
- (Köhne, T – 2019 – point mass estimation from satellite tracking)
- (Widner, M – 2018 – a study of novel satellite constellations for gravity field measurement)
- (Wolfenbarger, N - 2017 - on the precise estimation of attitude from star trackers)
- (King, J - 2017 - error analysis of attitude estimation for ICESat-2)
- (Fulcher, R – 2016 – on the thermal characteristics of GRACE satellites)
- (McWilliams, H – 2015 – on the validation of the 1-cm orbit for LEO satellites)
- (McCandless, S E – 2014 – on the multi-sensor data fusion for drought monitoring from GRACE)
- (McCullough, C – 2013 – on the numerical methods for next generation gravity missions)
- (Sakumura, C – 2013 – on the ensemble averaging of gravity field solutions)
- (Krishnan, S – 2012 – on the empirical reconstruction of accelerations from orbits)
- (Pini, A – 2012 – on the role of ground track repeats and GRACE data quality)
- (Benegalrao, S – 2012 – on the sensitivity analysis of attitude control systems)
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