ISO-690 (author-date, English)

YOUNSE, Paulo, CAMERON, Jessica und BRADLEY, Thomas H., 2022. Comparative analysis of model‐based and traditional systems engineering approaches for simulating a robotic space system architecture through automatic knowledge processing. Systems Engineering. 1 Juli 2022. Vol. 25, no. 4, p. 360-386. DOI 10.1002/sys.21619.

Elsevier - Harvard (with titles)

Younse, P., Cameron, J., Bradley, T.H., 2022. Comparative analysis of model‐based and traditional systems engineering approaches for simulating a robotic space system architecture through automatic knowledge processing. Systems Engineering 25, 360-386. https://doi.org/10.1002/sys.21619

American Psychological Association 7th edition

Younse, P., Cameron, J., & Bradley, T. H. (2022). Comparative analysis of model‐based and traditional systems engineering approaches for simulating a robotic space system architecture through automatic knowledge processing. Systems Engineering, 25(4), 360-386. https://doi.org/10.1002/sys.21619

Springer - Basic (author-date)

Younse P, Cameron J, Bradley TH (2022) Comparative analysis of model‐based and traditional systems engineering approaches for simulating a robotic space system architecture through automatic knowledge processing.. Systems Engineering 25:360-386. https://doi.org/10.1002/sys.21619

Juristische Zitierweise (Stüber) (Deutsch)

Younse, Paulo/ Cameron, Jessica/ Bradley, Thomas H., Comparative analysis of model‐based and traditional systems engineering approaches for simulating a robotic space system architecture through automatic knowledge processing., Systems Engineering 2022, 360-386.

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