Atmospheric Correction of Hyperspectral Satellite Data: Significance, Solutions, and Current Developments

15 Sept 2026
Room C 62 b
1.3.4 Looking at the Earth from above: air- and spaceborne remote sensing
Atmospheric correction of satellite-based remote sensing data is an essential component of operational processing chains to ensure the highly accurate reconstruction of surface reflectance. The software for atmospheric correction of satellite data developed at the German Aerospace Center, "Python-based Atmospheric Correction" (PACO), and its Open‑Source follow-up project "CHIME L2 Open‑Source Library" are used in a wide range of operational and upcoming missions (e.g., DESIS, EnMAP, CHIME) and thus contribute extensively to the generation of the global satellite data base. The presentation aims to provide, for better understanding, an insight into the theoretical basis of current atmospheric correction algorithms and their significance for satellite-based remote sensing. It will also present current developments (with a focus on hyperspectral data, incorporation of external reference data, and machine learning methods) as well as access and usage for the scientific community.
Session Moderator
Denise Dettmering
Dr. Denise Dettmering, Deutsches Geodätisches Forschungsinstitut - Technische Universität München
Speakers
Maximilian Langheinrich
Maximilian Langheinrich, Research and Development Engineer - Deutsches Zentrum für Luft- und Raumfahrt (German Aerospace Center)

Tags

Frontiers of Geodetic Science

Language

Englisch // English