Improved analysis strategy and accessibility of the SIRGAS reference frame

The SIRGAS reference system is at present realized by the SIRGAS Continuously Operating Network (SIRGAS-CON) composed by about 200 stations distributed over Latin America and the Caribbean. SIRGAS member countries are improving their national reference frames by installing continuously operating GPS...

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Autor principal: Brunini, C.
Otros Autores: Sanchez, L., Drewes, H., Costa, S., Mackern, V., Martínez, W., Seemuller, W., da Silva, A.
Formato: Acta de conferencia Capítulo de libro
Lenguaje:Inglés
Publicado: 2012
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Acceso en línea:Registro en Scopus
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100 1 |a Brunini, C. 
245 1 0 |a Improved analysis strategy and accessibility of the SIRGAS reference frame 
260 |c 2012 
270 1 0 |m Brunini, C.; Universidad Nacional de La Plata (UNLP), La Plata, Argentina; email: claudiobrunini@yahoo.com 
506 |2 openaire  |e Política editorial 
504 |a Costa, S.M.A., da Silva, A.L., Vaz, J.A., Period of SIRGAS-CON solutions: From week 1495 to 1531 (2009) Presented At the SIRGAS 2009 General Meeting, , www.sirgas.org, Report of IBGE Combination Centre, Buenos Aires, Argentina. September. Available at 
504 |a Dach, R., Hugentobler, U., Fridez, P., Meindl, M., (2007) Bernese GPS Software Version 5.0 Documentation, p. 640. , eds, Astronomical Institute, University of Berne 
504 |a Dow, J.M., Neilan, R.E., Rizos, C., The International GNSS Service in a hanging landscape of Global Navigation Satellite Systems (2009) J Geodesy, 83, pp. 191-198. , doi:10.1007/s00190-008-0300-3 
504 |a Drewes, H., Kaniuth, K., Voelksen, C., Alves, C.S.M., Souto, F.L.P., Results of the SIRGAS campaign 2000 and coordinates variations with respect to the 1995 South American geocentric reference frame (2005) A Window On the Future of Geodesy, 128, pp. 32-37. , In: Sanso F (ed), IAG symposia. Springer, Heidelberg 
504 |a Drewes, H., Heidbach, O., Deformation of the South American crust estimated from finite element and collocation methods (2005) A Window On the Future of Geodesy, 128, pp. 544-549. , In: Sanso F (ed), IAG Symposia. Springer, Heidelberg 
504 |a Natali, M.P., Muller, M., Fernández, L., Brunini, C., CPLat: The pilot processing center for SIRGAS in Argentina (2009) Geodetic Reference Frames, 134, pp. 179-184. , In: Drewes H, IAG Symposia. Springer, Heidelberg 
504 |a Sanchez, L., Brunini, C., Achievements and challenges of SIRGAS (2009) Geodetic Reference Frames, 134, pp. 161-166. , Drewes H, IAG symposia. Springer, Heidelberg 
504 |a Sanchez, L.W., Seemuller, M.S., Seitz, M., Combination of the weekly solutions delivered by the SIRGAS Processing Centres for the SIRGAS-CON reference frame (2011) Geodesy For Planet Earth, Buenos Aires Argentina, p. 136. , In: Kenyon S et al (eds), IAG symposia. Springer, Heidelberg 
504 |a Seemuller, W., Drewes, H., Annual Report 2003-2004 of IGS RNAAC SIR (2008) Jet Propulsion Laboratory, , http://igscb.jpl.nasa.gov/igscb/resource/pubs/2003-2004_IGS_Annual_Report.pdf, In: IGS 2001-02 Technical Reports, IGS Central Bureau, (eds, Pasadena, CA. Available at 
504 |a Seemuller, W., Krugel, M., Sanchez, L., Drewes, H., (2008) The Position and Velocity Solution DGF08P01 of the IGS Regional Network Associate Analysis Centre For SIRGAS (IGS RNAAC SIR), , www.sirgas.org, DGFI Report No. 79. DGFI, Munich. Available at 
504 |a Seemuller, W., Seitz, M., Sanchez, L., Drewes, H., (2009) The Position and Velocity Solution SIR09P01 of the IGS Regional Network Associate Analysis Centre For SIRGAS (IGS RNAAC SIR), , www.sirgas.org, DGFI Report No. 85. DGFI, Munich. Available at 
504 |a Seemuller, W., Sanchez, L., (2009) SIRGAS Processing Centre At DGFI: Report For the SIRGAS 2009 General Meeting, , www.sirgas.org, Presented at the SIRGAS 2009 General Meeting. Buenos Aires, Argentina, September. Available at 
504 |a (1997) SIRGAS Final Report, p. 96. , www.sirgas.org, SIRGAS, Working Groups I and II IBGE, Rio de Janeiro, Available atA4 - FIG; ION; ISPRS 
520 3 |a The SIRGAS reference system is at present realized by the SIRGAS Continuously Operating Network (SIRGAS-CON) composed by about 200 stations distributed over Latin America and the Caribbean. SIRGAS member countries are improving their national reference frames by installing continuously operating GPS stations, which have to be consistently integrated into the continental network. As the number of these stations is rapidly increasing, the analysis strategy of the SIRGAS-CON network is based on two hierarchy levels: a) A core network with homogeneous continental coverage and stable site locations ensures the long-term stability of the reference frame. This network is processed by DGFI (Germany) as the IGS RNAAC SIR. b) Several densification sub-networks (corresponding to the national reference networks) improve the accessibility to the reference frame in the individual countries. Currently, the SIRGAS-CON stations are classified in three densification sub-networks (a southern, a middle, and a northern one), which are processed by the SIRGAS Local Processing Centres CIMA (Argentina), IBGE (Brazil), and IGAC (Colombia). These four Processing Centres deliver loosely constrained weekly solutions for the assigned sub-networks, which are integrated in a unified solution by the SIRGAS Combination Centres (DGFI and IBGE). The main SIRGAS products are: loosely constrained weekly solutions in SINEX format for further combinations of the network, weekly positions aligned to the ITRF as reference for GPS positioning in Latin America; and multi-year solutions (positions + velocities) for practical and scientific applications requiring time-dependent coordinates. This paper describes the analysis of the SIRGAS-CON network as the current realization of the SIRGAS reference system, its quality and consistency, as well as the planned activities to continue improving this reference frame. © Springer-Verlag Berlin Heidelberg 2012.  |l eng 
593 |a Universidad Nacional de La Plata (UNLP), La Plata, Argentina 
593 |a Deutsches Geodätisches Forschungsinstitut (DGFI), Munich, Germany 
593 |a Instituto Brasileiro de Geografia e Estátistica (IBGE), Rio de Janeiro, Brazil 
593 |a Universidad Nacional de Cuyo, Mendoza (CIMA), Mendoza, Argentina 
593 |a Instituto Geográfico Agustín Codazzi (IGAC), Bogota, Colombia 
690 1 0 |a ANALYSIS STRATEGIES 
690 1 0 |a CONTINENTAL NETWORK 
690 1 0 |a LONG TERM STABILITY 
690 1 0 |a REFERENCE NETWORK 
690 1 0 |a REFERENCE SYSTEMS 
690 1 0 |a SCIENTIFIC APPLICATIONS 
690 1 0 |a UNIFIED SOLUTIONS 
690 1 0 |a EARTH (PLANET) 
690 1 0 |a GEODESY 
690 1 0 |a GEODETIC SATELLITES 
690 1 0 |a GLOBAL POSITIONING SYSTEM 
690 1 0 |a QUALITY CONTROL 
690 1 0 |a CONFERENCE PROCEEDING 
690 1 0 |a GPS 
690 1 0 |a NETWORK ANALYSIS 
690 1 0 |a POSITIONING 
690 1 0 |a ATLANTIC OCEAN 
690 1 0 |a BRAZIL 
690 1 0 |a CARIBBEAN SEA 
690 1 0 |a GERMANY 
651 4 |a LATIN AMERICA AND THE CARIBBEAN 
651 4 |a ARGENTINA 
651 4 |a COLOMBIA 
651 4 |a LATIN AMERICA 
700 1 |a Sanchez, L. 
700 1 |a Drewes, H. 
700 1 |a Costa, S. 
700 1 |a Mackern, V. 
700 1 |a Martínez, W. 
700 1 |a Seemuller, W. 
700 1 |a da Silva, A. 
711 2 |c Chania, Crete  |d 31 August 2009 through 4 September 2009  |g Código de la conferencia: 99461 
773 0 |d 2012  |g v. 136  |h pp. 3-10  |p International Association of Geodesy Symposia  |n International Association of Geodesy Symposia  |x 09399585  |z 9783642203374  |t IAG Symposium on Geodesy for Planet Earth, IAG 2009 
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