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NKG2020 transformation: An updated transformation between dynamic and static reference frames in the Nordic and Baltic countries

  • Pasi Häkli*
  • , Kristian Evers
  • , Lotti Jivall
  • , Tobias Nilsson
  • , Sveinung Himle
  • , Karin Kollo
  • , Ivars Liepiņš
  • , Eimuntas Paršeliūnas
  • , Olav Vestøl
  • , Martin Lidberg
  • *Corresponding author for this work
  • Finnish Geospatial Research Institute
  • Agency for Data Supply and Efficiency
  • Lantmäteriet
  • Kartverket
  • Estonian Land Board
  • Latvian Geospatial Information Agency
  • Vilnius Gediminas Technical University

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)

Abstract

Coordinates in global reference frames are becoming more and more common in positioning whereas most of the geospatial data are stored in registries in national reference frames. It is therefore essential to know the relation between global and national coordinates, i.e., the transformation, as accurately as possible. Officially provided pan-European transformations do not account for the special conditions in the Nordic and Baltic countries, namely crustal deformations caused by Glacial Isostatic Adjustment. Therefore, they do not fulfill the demands for the most accurate applications like long-term reference frame maintenance. Consequently, the Nordic Geodetic Commission (NKG) has developed customized and accurate transformations from the global ITRF to the national ETRS89 realizations for the Nordic and Baltic countries. We present the latest update, called the NKG2020 transformation, with several improvements and uncertainty estimates. We also discuss its significance and practical implementation for geodetic and geospatial communities.

Original languageEnglish
Article number20220155
JournalJournal of Geodetic Science
Volume13
Issue number1
DOIs
Publication statusPublished - 1 Jan 2023
Externally publishedYes

Keywords

  • ETRS89
  • Glacial Isostatic Adjustment
  • ITRF
  • NKG transformation
  • coordinate transformations
  • intraplate deformations
  • land uplift
  • reference frames
  • semi-dynamic datum

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