Robust and Reconfigurable On-Board Data Handling Subsystem for Present and Future Brazilian CubeSat Missions

Fuente: arXiv
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Main Authors: Costa, Victor O., D'Ávila, Mauren, Arena, Douglas, Schreiner, Vinicius, Menezes, Renan, Hoffmann, Cleber, Pereira, Edson, Sato, Lidia Shibuya, Tavares, Felipe, Loures, Luis, Kastensmidt, Fernanda L.
Format: Preprint
Published: 2024
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author Costa, Victor O.
D'Ávila, Mauren
Arena, Douglas
Schreiner, Vinicius
Menezes, Renan
Hoffmann, Cleber
Pereira, Edson
Sato, Lidia Shibuya
Tavares, Felipe
Loures, Luis
Kastensmidt, Fernanda L.
author_facet Costa, Victor O.
D'Ávila, Mauren
Arena, Douglas
Schreiner, Vinicius
Menezes, Renan
Hoffmann, Cleber
Pereira, Edson
Sato, Lidia Shibuya
Tavares, Felipe
Loures, Luis
Kastensmidt, Fernanda L.
contents CubeSats require robust OBDH solutions in harsh environments. The Demoiselle OBC, featuring a radiation-tolerant APSoC and layered FSW, supports reuse, in-orbit updates, and secure operations. To be validated through ITASAT2 and SelenITA, it ensures fault tolerance, flexibility, and compatibility with emerging technologies. This architecture establishes a foundation for long-lasting, scalable OBDH systems in future Brazilian CubeSat missions, ensuring long-term reliability and adaptability.
format Preprint
id arxiv_https___arxiv_org_abs_2412_17732
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Robust and Reconfigurable On-Board Data Handling Subsystem for Present and Future Brazilian CubeSat Missions
Costa, Victor O.
D'Ávila, Mauren
Arena, Douglas
Schreiner, Vinicius
Menezes, Renan
Hoffmann, Cleber
Pereira, Edson
Sato, Lidia Shibuya
Tavares, Felipe
Loures, Luis
Kastensmidt, Fernanda L.
Instrumentation and Methods for Astrophysics
Hardware Architecture
CubeSats require robust OBDH solutions in harsh environments. The Demoiselle OBC, featuring a radiation-tolerant APSoC and layered FSW, supports reuse, in-orbit updates, and secure operations. To be validated through ITASAT2 and SelenITA, it ensures fault tolerance, flexibility, and compatibility with emerging technologies. This architecture establishes a foundation for long-lasting, scalable OBDH systems in future Brazilian CubeSat missions, ensuring long-term reliability and adaptability.
title Robust and Reconfigurable On-Board Data Handling Subsystem for Present and Future Brazilian CubeSat Missions
topic Instrumentation and Methods for Astrophysics
Hardware Architecture
url https://arxiv.org/abs/2412.17732