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In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods

Ultraviolet and infrared sensors at high quantum efficiency on-board a small satellite (UVSQ-SAT) is a CubeSat dedicated to the observation of the Earth and the Sun. This satellite has been in orbit since January 2021. It measures the Earth’s outgoing shortwave and longwave radiations. The satellite...

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Autores principales: Finance, Adrien, Dufour, Christophe, Boutéraon, Thomas, Sarkissian, Alain, Mangin, Antoine, Keckhut, Philippe, Meftah, Mustapha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8588341/
https://www.ncbi.nlm.nih.gov/pubmed/34770668
http://dx.doi.org/10.3390/s21217361
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author Finance, Adrien
Dufour, Christophe
Boutéraon, Thomas
Sarkissian, Alain
Mangin, Antoine
Keckhut, Philippe
Meftah, Mustapha
author_facet Finance, Adrien
Dufour, Christophe
Boutéraon, Thomas
Sarkissian, Alain
Mangin, Antoine
Keckhut, Philippe
Meftah, Mustapha
author_sort Finance, Adrien
collection PubMed
description Ultraviolet and infrared sensors at high quantum efficiency on-board a small satellite (UVSQ-SAT) is a CubeSat dedicated to the observation of the Earth and the Sun. This satellite has been in orbit since January 2021. It measures the Earth’s outgoing shortwave and longwave radiations. The satellite does not have an active pointing system. To improve the accuracy of the Earth’s radiative measurements and to resolve spatio-temporal fluctuations as much as possible, it is necessary to have a good knowledge of the attitude of the UVSQ-SAT CubeSat. The attitude determination of small satellites remains a challenge, and UVSQ-SAT represents a real and unique example to date for testing and validating different methods to improve the in-orbit attitude determination of a CubeSat. This paper presents the flight results of the UVSQ-SAT’s attitude determination. The Tri-Axial Attitude Determination (TRIAD) method was used, which represents one of the simplest solutions to the spacecraft attitude determination problem. Another method based on the Multiplicative Extended Kalman Filter (MEKF) was used to improve the results obtained with the TRIAD method. In sunlight, the CubeSat attitude is determined at an accuracy better than 3 [Formula: see text] (at one [Formula: see text]) for both methods. During eclipses, the accuracy of the TRIAD method is 14 [Formula: see text] , while it reaches 10 [Formula: see text] (at one [Formula: see text]) for the recursive MEKF method. Many future satellites could benefit from these studies in order to validate methods and configurations before launch.
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spelling pubmed-85883412021-11-13 In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods Finance, Adrien Dufour, Christophe Boutéraon, Thomas Sarkissian, Alain Mangin, Antoine Keckhut, Philippe Meftah, Mustapha Sensors (Basel) Article Ultraviolet and infrared sensors at high quantum efficiency on-board a small satellite (UVSQ-SAT) is a CubeSat dedicated to the observation of the Earth and the Sun. This satellite has been in orbit since January 2021. It measures the Earth’s outgoing shortwave and longwave radiations. The satellite does not have an active pointing system. To improve the accuracy of the Earth’s radiative measurements and to resolve spatio-temporal fluctuations as much as possible, it is necessary to have a good knowledge of the attitude of the UVSQ-SAT CubeSat. The attitude determination of small satellites remains a challenge, and UVSQ-SAT represents a real and unique example to date for testing and validating different methods to improve the in-orbit attitude determination of a CubeSat. This paper presents the flight results of the UVSQ-SAT’s attitude determination. The Tri-Axial Attitude Determination (TRIAD) method was used, which represents one of the simplest solutions to the spacecraft attitude determination problem. Another method based on the Multiplicative Extended Kalman Filter (MEKF) was used to improve the results obtained with the TRIAD method. In sunlight, the CubeSat attitude is determined at an accuracy better than 3 [Formula: see text] (at one [Formula: see text]) for both methods. During eclipses, the accuracy of the TRIAD method is 14 [Formula: see text] , while it reaches 10 [Formula: see text] (at one [Formula: see text]) for the recursive MEKF method. Many future satellites could benefit from these studies in order to validate methods and configurations before launch. MDPI 2021-11-05 /pmc/articles/PMC8588341/ /pubmed/34770668 http://dx.doi.org/10.3390/s21217361 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Finance, Adrien
Dufour, Christophe
Boutéraon, Thomas
Sarkissian, Alain
Mangin, Antoine
Keckhut, Philippe
Meftah, Mustapha
In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title_full In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title_fullStr In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title_full_unstemmed In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title_short In-Orbit Attitude Determination of the UVSQ-SAT CubeSat Using TRIAD and MEKF Methods
title_sort in-orbit attitude determination of the uvsq-sat cubesat using triad and mekf methods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8588341/
https://www.ncbi.nlm.nih.gov/pubmed/34770668
http://dx.doi.org/10.3390/s21217361
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