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  •   Startseite
  • Lecture Notes in Informatics
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  • GIL-Jahrestagung
  • P330 - 43. GIL-Jahrestagung 2022 - Fokus: Resiliente Agri-Food-Systeme
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FarmBot-based-ISOBUS demonstrator for research and teaching

Autor(en):
Phillips, Frederick John [DBLP] ;
Favier, Marc-Alexandre [DBLP] ;
Dörr, Jörg [DBLP]
Zusammenfassung
With the rise of digitalization in today’s agriculture, it is becoming increasingly important to integrate modern technology, like ISOBUS, in both research and education. That’s why a certain number of products such as Hardware-in-the-Loop and physics-engine based simulators or small scale ISOBUS demonstrators have already been developed in the past [Fa20]. Still, Researchers and students have limited options to interact with this type of system. Combining ISOBUS with an open-source farming robot called FarmBot represents a unique opportunity to work and teach with a small-scale local setup. To this end, a demonstrator was created that integrates a university FarmBot with an actual tractor terminal. The demonstrator’s software controls and tracks the FarmBot’s movements. Written in Python, it features robust compatibility and expandability. The hardware component connects this software to the ISOBUS terminal. A simple attachment setup mimics a tractor implement and displays advanced ISOBUS functions. Section Control and Variable Rate Application are of two these functions accurately incorporated by the developed tool. This system allows for a customizable demonstrator on university grounds, enabling students and researchers to work and learn with industry-standard implements.
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Phillips, F. J., Favier, M.-A. & Dörr, J., (2023). FarmBot-based-ISOBUS demonstrator for research and teaching. In: Hoffmann, C., Stein, A., Ruckelshausen, A., Müller, H., Steckel, T. & Floto, H. (Hrsg.), 43. GIL-Jahrestagung, Resiliente Agri-Food-Systeme. Bonn: Gesellschaft für Informatik e.V.. (S. 453-458).
@inproceedings{mci/Phillips2023,
author = {Phillips, Frederick John AND Favier, Marc-Alexandre AND Dörr, Jörg},
title = {FarmBot-based-ISOBUS demonstrator for research and teaching},
booktitle = {43. GIL-Jahrestagung, Resiliente Agri-Food-Systeme},
year = {2023},
editor = {Hoffmann, Christa AND Stein, Anthony AND Ruckelshausen, Arno AND Müller, Henning AND Steckel, Thilo AND Floto, Helga} ,
pages = { 453-458 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
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Mehr Information

ISBN: 978-3-88579-724-1
ISSN: 1617-5468
Datum: 2023
Sprache: en (en)
Typ: Text/Conference Paper

Keywords

  • sustainable farming
  • ISOBUS
  • end-to-end digitalization
  • FMIS
  • interoperability
Sammlungen
  • P330 - 43. GIL-Jahrestagung 2022 - Fokus: Resiliente Agri-Food-Systeme [67]

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Über uns | FAQ | Hilfe | Impressum | Datenschutz

Gesellschaft für Informatik e.V. (GI), Kontakt: Geschäftsstelle der GI
Diese Digital Library basiert auf DSpace.