Geodetic activities in Argentina - SIRGAS
Transcript of Geodetic activities in Argentina - SIRGAS
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Geodetic activities in ArgentinaSergio Cimbaro
President of National Geographic Institute
International Workshop for the
Implementation of the Global Geodetic Reference Frame
(GGRF) in Latin AmericaBuenos Aires, Argentina, Sep 16-20, 2019
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INFO RMATIO N ABO UT ARG ENTINA
Geodetic Activities in Argentina 3
UruguayChile
Brazil
Paraguay
Bolivia
Antarctica
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INFO RMATIO N ABO UT ARG ENTINA ( cont . )
Geodetic Activities in Argentina
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INFO RMATIO N ABO UT ARG ENTINA ( cont . )
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2,780,400 km2 eighth-largest country in the world
second-largest country in Latin America
largest Spanish-speaking country in the world
40,177,096 people (INDEC, 2011)
Our geodetic community is not very big, but very active.
We have 15 academic units that teach geodesy and geophysics
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INFO RMATIO N ABO UT ARG ENTINA ( cont . )
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15 Surveying Engineering (orange dots)
5 Geophysics (blue dots)
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INFO RMATIO N ABO UT ARG ENTINA ( cont . )
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Argentina is a member of the IUGG since 1927.
It has a National Committee of the IUGG with representation of all
associations, which is chaired by the NGI.
Within that framework there is a Subcommittee on Geodesy where a large
number of scientists participate.
There is also a non-governmental organization called the Argentine
Association of Geophysicists and Geodesists (AAGG)
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CNUG G I G eodesy Subcom m i t t ee
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Argentina is a member of the IUGG since 1927.
It has a National Committee of the IUGG with representation of all
associations, which is chaired by the NGI.
Within that framework there is a Subcommittee on Geodesy where a large
number of scientists participate.
There is also a non-governmental organization called the Argentine
Association of Geophysicists and Geodesists (AAGG)
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Assoc i a t i on o f G eophys i c i s t s and G eodes i s t s ( AAG G )
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Was created on September 19, 1959, and this Thursday turns 60 since its
creation.
It has among its objectives:
Contribute to progress in the country, research, knowledge and development in
all disciplines related to Geophysics, Geodesy and related sciences, through
the resources at your fingertips.
Promote reciprocal knowledge and the relationship between its members,
Maintain relationships with similar national and international scientific
associations.
It has a scientific journal "GEOACTA", which is published in the online version
ISSN 1852-7744, which includes original and unpublished scientific articles on
topics related to Earth, Water and Atmospheric Sciences.
Since its creation it has led to the organization of 28 Scientific Meetings, and
the next one will be from September 14 to 18, 2020, in the City of Rosario,
Santa Fe.
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NATIO NAL G EO G RAPH IC INSTITUTE
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It was created in 1879 for military purposes
In 2009, the NGI became a civilian Institution
It is a decentralised organisation of the Ministry of Defence of Argentina
280 employees work at the NGI
15 offices in Argentinean provinces
The mission of the NGI is to prepare the official cartography of the Nation
by capturing precise and essential geospatial information for the integral
development of the country.
The vision of the NGI is to be the lead agency in the production and
transfer of geospatial knowledge and information in Argentina
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NATIO NAL G EO G RAPH IC INSTITUTE
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RESEARCH AREAS AND PRO JECTS
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Geodesy
The NGI is responsible for the realization and updating of
the geodetic reference frames in Argentina (i.e. geocentric,
elevation and gravimetric)
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Geocentric Reference Frame (POSGAR 07)
Established in May 15 2009
ITRF 05, 2006.632 epoch
178 benchmarks with high precision
> 6000 benchmarks
as frame densification
RESEARCH AREAS AND PRO JECTS
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CORS network (RAMSAC)
Started in 1998
120 CORS (including 3 CORS in Antarctica)
Free-service
FTP server and Web
interface
RESEARCH AREAS AND PRO JECTS ( Cont . )
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NTRIP service (RAMSAC-NTRIP)
Started in 2010
74 CORS
Free-service
BKG Professional
Caster in use
RESEARCH AREAS AND PRO JECTS ( Cont . )
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GPS processing data center (CPC-Ar)Started in 2005
GAMIT / GLOBK software (MIT, USA)
2 weekly solutions:constrained (ITRF14) >400 CORS Arg. Ref. Frame
loosely-constrained (ITRF14) 110 CORS SIRGAS
Time Series
Trajectories
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Total WRMS scatter of POSGAR07 (aligned to ITRF14) – daily solutions
RESEARCH AREAS AND PRO JECTS ( Cont . )
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NEU WRMS scatter of POSGAR07 (aligned to ITRF14) – daily solutions
North: mean = 1.24 mm East: mean = 1.43 mm Up: mean = 4.23 mm
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Cluster for GNSS processing
Based on Linux
112 cores (3 nodes)
256 GB of RAM on each node
10 TB of storage for RINEX and processing results
PostgreSQL database to store results and metadata
Current number of RINEX files: ~1.4 million
Ready to start processing VLBI (coming soon)
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Spirit-levelling network (RN-Ar)Started in 1923
In 2010, a new project to
readjust the levelling
network and compute
the orthometric heights
(Mader 1954) of all the
benchmarks started.
In 2016, the new Height
System was officialised.
First-order
network
Second-order
network
Third-order
network
396 levelling lines 329 levelling lines 1298 levelling lines
~18,000 benchmarks ~8,000 benchmarks ~8,000 benchmarks
~59,000 km levelled ~32,000 km levelled ~52,000 km levelled
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Argentina Network of Absolute Gravity (RAGA)
5 points measured in 1991 by the Institut für
Erdmessung (Institute of Geodesy of Hannover
University, Germany) JILAG-3 gravimeter
Remeasured in 2014 in collaboration with University of
São Paulo (Brazil) and the Institut de recherche pour le
développement (French Institute of Research for the
Development) 2
Micro-g LaCoste A-10
gravimeters
43 sites
Accuracy < 0.02 mgal
RESEARCH AREAS AND PRO JECTS ( Cont . )
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First-order gravity network
Measured between 2012-2015
5 relative gravimeter used (i.e. 2 Scintrex CG-5 and
3 LaCoste & Romberg model G)
227 sites
Accuracy < 0.025 mgal
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Second-order gravity network
Measured between 1950-2015
Accuracy < 0.1 mgal
In 2014, a new project to readjust the network was
commenced.
In 2016, the network
calculation ended.
13,871 sites
Accuracy < 0.1 mgal
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Geoid model (GEOIDE-Ar16)
Determined using the RCR technique in the Helmert-
Stokes’ schemeGGM GOCO05S
~650,000 gravity observations
Fill-in voids using the DTU13 gravity model
Fitted to ~1,900 GPS- levelling benchmarks
Accuracy < 10 cm
New gravimetric observations (2016-2018)
~1200 measurements per year
New co-located GPS-levelling observations (2010-
2018) ~400 benchmarks per year
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Non lineal velocity model (VEL-Ar)
Argentinean Geodetic Reference Frame (called
POSGAR07 and based on ITRF05) was officialised
in 2009
The 27th of February 2010 a 8.8-magnitude
earthquake struck Concepcion (Chile)
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Atomic Time Scale
New time system (Microsemi Precise Time Scale
System)
New caesium clock (Microsemi 5071A Primary
Frequency Standard)
Contribution with the International Bureau of
Weights and Measures (BIPM) to maintain the
International Atomic Time (TAI) using PPP
NTP service
RESEARCH AREAS AND PRO JECTS ( Cont . )
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Some recent international collaboration within Geodesy
National Geospatial-Intelligence Agency (NGA, USA)GPS control ground station until 2017
National Astronomical Observatory of China (NOAC, China)Beidou control ground station since 2015
Institut de recherche pour le développement (IRD, France)Performing gravimetric measurements since 2010
University of São Paulo (Brazil)Performing gravimetric measurements since 1995
Dresden University (TUD, Germany)Gravimetric research project in Patagonia (BKG-TUD)
Memphis University / The Ohio State University (USA)Central Andes Project (CAP) since 1992
RMIT University (Australia)Geoid modelling from 2014 to 2016
RESEARCH AREAS AND PRO JECTS ( Cont . )
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CO LLABO RATIO N BETWEEN NG I AND BK G
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Memorandum of Understanding NGI–BKG, signed in April 2016
GPS+gravimetric measurements at local-ties benchmarks, August 2016
Agreement NGI-CONICET-BKG, signed in April 2017
Determination of the main orthometric height at AGGO, November 2017
Calibration of the FG5 absolute gravity at AGGO, January 2018
VLBI training course at BKG (Leipzig, Germany), March 2018
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CO LLABO RATIO N BETWEEN NG I AND BK G ( cont . )
Geodetic Activities in Argentina
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CO LLABO RATIO N BETWEEN NG I AND BK G ( cont . )
Geodetic Activities in Argentina
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CO LLABO RATIO N BETWEEN NG I AND BK G ( cont . )
• Sets the Earth Orientation Parameters.
• It contributes to the definition of a stable, precise and sustainable Reference Frame.
• It allows to improve the strategies to maintain the reference frames POSGAR and SIRGAS.
• Defines, materializes and maintains the National Geodetic Reference Frame.
• Materialize and update the RAMSAC Network.
• Process and adjust its Geodetic Reference Frame in its Scientific Processing Center.
AGGO IGN
Processing!
GENERATE DATA PRODUCES SERVICES
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VLBI Preliminary results: Polar Motion and Length of Day
RESEARCH AREAS AND PRO JECTS ( Cont . )
CIGA: First VLBI data processing center in South America
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VLBI Preliminary results: AGGO time series
RESEARCH AREAS AND PRO JECTS ( Cont . )
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