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Contributions to GRACE Gravity Field Recovery - Improvements in Dynamic Orbit Integration, Stochastic Modelling of the Antenna Offset Correction, and Co-Estimation of Satellite Orientations
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Seite - 166 - in Contributions to GRACE Gravity Field Recovery - Improvements in Dynamic Orbit Integration, Stochastic Modelling of the Antenna Offset Correction, and Co-Estimation of Satellite Orientations

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Rao, K. Ramamohan and P. C. Yip (1990). Discrete Cosine Transform: Algorithms, Advan- tages, Applications. Boston: Academic Press. 490 pp. isbn: 978-0-12-580203-1 (cit. on p. 63). Reinking, Jo¨rg (2008). “Total Least Squares.” In: ZfV 133. In german, pp. 384–389. url: http://geodaesie.info/system/files/privat/zfv_2008_6_Reinking.pdf (visited on 2016-02-26) (cit. on pp. 119, 121–124, 127, 128, 152, 154). Romans, L (2003). Optimal Combination of Quaternions from Multiple Star Cameras. Memorandum. JPL. url: ftp://podaac.jpl.nasa.gov/allData/grace/docs/ quaternion_memo.pdf (visited on 2018-07-05) (cit. on p. 46). Rosenblatt, Murray (1956). “Remarks on Some Nonparametric Estimates of a Density Function.” In: The Annals of Mathematical Statistics 27.3, pp. 832–837.doi:10.1214/ aoms/1177728190 (cit. on p. 107). Savcenko, Roman et al. (2012). EOT11a - Global Empirical Ocean Tide Model from Multi- Mission Satellite Altimetry. Dataset.doi:10.1594/PANGAEA.834232 (cit. on p. 49). Schaffrin, Burkhard (2007). “Connecting the Dots: The Straight-Line Case Revisited.” In: ZfV 132.06/2007, p. 10 (cit. on p. 119). Sheard, B. S. et al. (2012). “Intersatellite Laser Ranging Instrument for the GRACE Follow-on Mission.” In: Journal of Geodesy 86.12, pp. 1083–1095. doi: 10.1007/ s00190-012-0566-3 (cit. on p. 79). Sneeuw, Nicolaas (2000). “A Semi-Analytical Approach to Gravity Field Analysis from Satellite Observations.” Dissertation. Technische Universita¨t Mu¨nchen.url: http://tumb1.biblio.tu-muenchen.de/publ/diss/bv/2000/sneeuw.html (visited on 2013-07-31) (cit. on p. 76). Snow, Kyle (2012). “Topics in Total Least-Squares Adjustment within the Errors-In- Variables Model: Singular Cofactor Matrices and Prior Information.” Dissertation. Columbus, Ohio, USA: Ohio State University.url:http://hdl.handle.net/1811/ 78619 (visited on 2018-07-05) (cit. on p. 119). Stanton, Richard et al. (1998). GRACE Science & Mission Requirements Document.url: https://geodesy.geology.ohio-state.edu/course/refpapers/Grace_smrd.pdf (visited on 2018-07-05) (cit. on p. 23). Swenson, Sean and John Wahr (2006). “Post-Processing Removal of Correlated Errors in GRACE Data.” In: Geophysical Research Letters 33.8.doi:10.1029/2005GL025285 (cit. on pp. 20, 141). Tapley, Byron D. et al. (2004). “The Gravity Recovery and Climate Experiment: Mission Overview and Early Results.” In: Geophysical Research Letters 31.9.doi: 10.1029/ 2004GL019920 (cit. on p. 23). Vallado, David Anthony and Wayne D. McClain (2001). Fundamentals of Astrodynam- ics and Applications. 2. ed. 12. OCLC: 248390162. Dordrecht: Kluwer Academic Publishers. 958 pp. isbn: 978-1-881883-12-8 978-0-7923-6903-5 (cit. on p. 86). Van der Vorst, H. A. (1992). “Bi-CGSTAB: A Fast and Smoothly Converging Variant of Bi-CG for the Solution of Nonsymmetric Linear Systems.” In: SIAM Journal on Scientific and Statistical Computing 13.2, pp. 631–644.doi:10.1137/0913035 (cit. on p. 38). 166
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Contributions to GRACE Gravity Field Recovery Improvements in Dynamic Orbit Integration, Stochastic Modelling of the Antenna Offset Correction, and Co-Estimation of Satellite Orientations
Titel
Contributions to GRACE Gravity Field Recovery
Untertitel
Improvements in Dynamic Orbit Integration, Stochastic Modelling of the Antenna Offset Correction, and Co-Estimation of Satellite Orientations
Autor
Matthias Ellmerr
Verlag
Verlag der Technischen Universität Graz
Ort
Graz
Datum
2018
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-3-85125-646-8
Abmessungen
21.0 x 29.7 cm
Seiten
185
Schlagwörter
Geodäsie, Gravitation, Geodesy, Physics, Physik
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Naturwissenschaften Physik
Technik
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Contributions to GRACE Gravity Field Recovery