Skip to content
New issue

Have a question about this project? Sign up for a free GitHub account to open an issue and contact its maintainers and the community.

By clicking “Sign up for GitHub”, you agree to our terms of service and privacy statement. We’ll occasionally send you account related emails.

Already on GitHub? Sign in to your account

MDPI Journal Submission #255

Open
wants to merge 6 commits into
base: main
Choose a base branch
from
Open
Show file tree
Hide file tree
Changes from 1 commit
Commits
File filter

Filter by extension

Filter by extension

Conversations
Failed to load comments.
Loading
Jump to
Jump to file
Failed to load files.
Loading
Diff view
Diff view
10 changes: 10 additions & 0 deletions manuscript/references.tex
Original file line number Diff line number Diff line change
Expand Up @@ -26,4 +26,14 @@
\bibitem{oml_origin_and_rationale}Jenkinis, S. Ontological Modeling Language 1.4. (2022), http://www.opencaesar.io/imce/2021/06/19/OML-Origin-and-Rationale.html
\bibitem{sealion_dof}Team, S. Distributed OSHW Framework (DOF). (Old Dominion University,2023), https://odu-cga-cubesat.github.io/dof-cubesat/
\bibitem{sealion_page}Team, S. SeaLion Mission Architecture. (Old Dominion University,2023), https://odu-cga-cubesat.github.io/sealion-mission-architecture/
\bibitem{linkml}Mungall, C. LinkML model your data. {\em LinkML}., https://linkml.io/
\bibitem{younse_cameron_bradley_2021}Younse, P., Cameron, J. \& Bradley, T. Comparative analysis of model-based and traditional systems engineering approaches for architecting a robotic space system through Automatic Information Transfer. {\em IEEE Access}. \textbf{9} pp. 107476-107492 (2021)
\bibitem{call_herber_2022}Call, D. \& Herber, D. Applicability of the diffusion of innovation theory to accelerate model-based systems engineering adoption. {\em Systems Engineering}. \textbf{25}, 574-583 (2022)
\bibitem{mazzini}Mazzini, S., Tronci, E., Paccagnini, C. \& Olive, X. A Model-Based methodology to support the Space System Engineering (MBSSE). {\em ERTS2 2010, Embedded Real Time Software \& Systems}. (2010,5), https://hal.science/hal-02267836
\bibitem{esa}ESA Model-based system engineering. , https://www.esa.int/Enabling\_Support/Preparing\_for\_the\_Future/Discovery\_and\_Preparation/Model-based\_system\_engineering
\bibitem{nottage_corns_2012}Nottage, D. \& Corns, S. Application of model-based systems engineering on a university satellite design team. {\em Procedia Computer Science}. \textbf{8} pp. 207-213 (2012)
\bibitem{kaslow}Kaslow, D., Ayres, B., Cahill, P., Hart, L. \& Yntema, R. Developing a CubeSat Model-Based System Engineering (MBSE) reference model — Interim status \#3. {\em 2017 IEEE Aerospace Conference}. pp. 1-15 (2017)
\bibitem{structurizr}Structurizr Software architecture models as code. {\em Structurizr}., https://structurizr.org/
\bibitem{f_prime_prime}Bocchino, R., Levison, J. \& Starch, M. FPP: A Modeling Language for F Prime. {\em 2022 IEEE Aerospace Conference (AERO)}. pp. 1-15 (2022)
\bibitem{f_prime}NASA F' a flight software and embedded systems framework. {\em F'}., https://nasa.github.io/fprime/
\end{thebibliography}
Loading