Modernizing and expanding the NASA Space Geodesy Network to meet future geodetic requirements

Author:

Merkowitz S. M.ORCID,Bolotin S.,Elosegui P.,Esper J.,Gipson J.,Hilliard L.,Himwich E.,Hoffman E. D.,Lakins D. D.,Lamb R. C.,Lemoine F. G.,Long J. L.,McGarry J. F.,MacMillan D. S.,Michael B. P.,Noll C.,Pavlis E. C.,Pearlman M. R.,Ruszczyk C.,Shappirio M. D.,Stowers D. A.

Funder

National Aeronautics and Space Administration

Publisher

Springer Science and Business Media LLC

Subject

Computers in Earth Sciences,Geochemistry and Petrology,Geophysics

Reference27 articles.

1. Auriol A, Tourain C (2010) DORIS system: the new age. Adv Space Res 46(12):1484–1496. https://doi.org/10.1016/j.asr.2010.05.015

2. Desai SD, Gross R, Haines BJ, Stowers DA (2013) Verification and validation of the GNSS stations at the prototype core site for NASA’s next generation Space Geodesy Network. In: American Geophysical Union, Fall Meeting 2013, AGU Fall Meeting Abstract G53B-0928

3. Esper J (2017) NASA’s Space Geodesy Network typical core site requirements and specification, NASA internal report number SGP-SYS-REQ-003

4. Fagard H (2006) Twenty years of evolution for the DORIS permanent network: from its initial deployment to its renovation. J Geod 80(8–11):429–456. https://doi.org/10.1007/s00190-006-0084-2

5. Hilliard LM, Beaudoin C, Corey BE et al (2013) The Space Geodesy project and radio frequency interference characterization and mitigation. In 2013 IEEE international geoscience and remote sensing symposium—IGARSS. https://doi.org/10.1109/igarss.2013.6721146

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