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Posiva
The Finnish Geodetic Institute studies crustal deformations at the candidate sites for final disposal of spent nuclear fuel.
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Sales of printed maps to end – check the opportunities offered by electronic maps
While the National Land Survey of Finland (NLS) will stop selling printed maps by the end of 2024, our broad range of maps will continue to be available to everyone online and as map printouts.
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Geoportti added to the roadmap for Finnish research infrastructures 2025–2028 to promote Finland’s RDI goals
Geoportti services promote Finland’s RDI goals by, for example, providing open easy-to-use geospatial datasets and high-performance computing services for researchers, decision-makers and companies to accelerate research, development and innovation.
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The National Land Survey of Finland exposed its equipment to GNSS interference in the Jammertest event so that researchers can develop solutions against it
How does GNSS interference affect the operation of the National Land Survey of Finland (NLS)?
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Production and exploitation of geometrically accurate, multi-spectral, multi-angular, reflectance time series based on airborne photogrammetry (GEORAD)
This is a Postdoctoral Researchers Project funded by the Academy of Finland.
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National guidelines for airborne photogrammetry
We are coordinating a working group that develops novel national guidelines for airborne imaging.
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Analysis and processing of SAR images
By the use of differential SAR interferometry and permanent scatterer techniques, it is possible to study target movements between SAR acquisitions.
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Nummela in Finland is home to the world’s most accurate line
The Nummela Standard Baseline is the world’s most accurate distance measurable between two points in the terrain, which attracts industrial customers, researchers and representatives of land survey organisations from across the world.
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Understanding the dynamic Earth in East Antarctica with multitechnique geodetic measurements
The goal of the DynEAnt project is to better understand the response of the East Antarctic lithosphere to changes in mass loading. In the project, we will develop new lithosophere and load models utilizing long time series of geodetic measurements both at Finland's Aboa station and from Dronning Maud Land. The project improves the accuracy of geodetic measurements in the area with the help of the new loading models we will develop.
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Anisotropy of backscatter, BRF, and goniometry
It is known that most natural surfaces are scattering incident radiation anisotropically as a function of illumination and viewing direction.
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