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DISCO-2 – an ambitious earth observing student CubeSat for arctic climate research

Authors :
Andreas Kjær Dideriksen
Mads Fredslund Andersen
Julian Priest
Nikolaj Forskov Eriksen
Mads Toudal Frandsen
Claus Melvad
Tobias Frejo Rasmussen
Noah Harry Kjeldgård Nielsen
Cecillie Thorup Strømsnes
Mads Juul Ahlebæk
Sigrid Samsing
Thomas Buris Larsen
Jeppe Don
Lasse Alexander Nissen Pedersen
Rune Hylsberg Jacobsen
Søren Rysgaard
Jung Min Kim
Robert Bayer
Caroline Christensen
Emil Fredsted Christiansen
Izabella Katharina Gosvig-Leach
Rasmus Gramstrup
Bóas Hermansson
Jesper Hesselvig
Jonas Mariager Jakobsen
Daniel Gjesse Kjellberg
Magnus Sejer Lind
Jeppe Lindhard
Mads Mikkelsen
Oliver Millinge
Tara Møller Moltesen
Sebastian Dahl Negendahl
Alexander Björn Kerff Nielsen
Gustav Balslev Nielsen
Maja Chieng Frisenberg Pedersen
Alexander Stegler Schøler Platz
Paul Rosero
Sofia Savic
Ívar Óli Sigurðsson
Gustav Skjernov
Nikolaj Sørensen
Samuel Grund Sørensen
Astrid Guldberg Theil
Jacob Bay Thomsen
Nicolaj Valsted
Anna Vestergaard
Christoffer Karoff
Source :
Frontiers in Remote Sensing, Vol 5 (2024)
Publication Year :
2024
Publisher :
Frontiers Media S.A., 2024.

Abstract

The severe impact of global warming, especially in the arctic region, have a multitude of consequences spanning from sea-level rises and freshening of the ocean, to significant changes to the animal life, biodiversity and species distribution. As the arctic regions are inherently remote and can be both hazardous and difficult to reach, research to improve our understanding of the climate change impact is often limited to short term field-campaigns. Here we present the Danish DISCO-2 student CubeSat mission, designed to meet the growing need for an Earth-observing platform. This mission leverages the rapid advancements in CubeSat technology over the past decades to overcome the limitations of traditional fieldwork campaigns. DISCO-2 will assist on-going arctic climate research with a payload of optical and thermal cameras in combination with novel in-orbit data analysis capabilities. It will further be capable of performing photogrammetric observations to determine ice volumes from deteriorating glaciers and provide surface temperatures, enabling studies of heat transfer between glaciers and arctic fjords. As a student satellite, the payload capabilities will also be offered to novel student research ideas throughout the mission life time. The modularity and wide range of of-the-shelf-components for CubeSats has facilitated an immense opportunity to tailor this earth observing CubeSat to accommodate specific scientific goals and further provided students at the participating universities with an unparalleled possibility to go from an initial research idea to a running CubeSat mission.

Details

Language :
English
ISSN :
26736187
Volume :
5
Database :
Directory of Open Access Journals
Journal :
Frontiers in Remote Sensing
Publication Type :
Academic Journal
Accession number :
edsdoj.f9dc067a56cb43e8b52f1c15bc7cb07a
Document Type :
article
Full Text :
https://doi.org/10.3389/frsen.2024.1474560