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Immersive learning in agriculture XR design of robotic milk production processes.pdf (636.3Kb)
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Title
Immersive learning in agriculture: XR design of robotic milk production processes
Author
Apraiz Iriarte, Ainhoa
Author (from another institution)
González Almaguer, Carlos Alberto
Saavedra Gastélum, Verónica
Berglund, Anders
González de Cosío, Arturo
Peñalva, Jorge
Research Group
Centro de Innovación en Diseño
Other institutions
Tecnológico de Monterrey
Mälardalen University
Version
Published version
Rights
© 2024 Design Society
Access
Embargoed access
URI
https://hdl.handle.net/20.500.11984/6651
Publisher’s version
https://doi.org/10.35199/EPDE.2024.97
Published at
Proceedings of the International Conference on EPDE  Pp. 575-580. Aston University, Birmingham, Reino Unido. 5-6 septiembre, 2024
Publisher
Design Society
Keywords
immersive learning
agriculture
XR reality
industry 5.0 ... [+]
immersive learning
agriculture
XR reality
industry 5.0
higher education
Educational innovation
ODS 4 Educación de calidad
ODS 9 Industria, innovación e infraestructura [-]
Abstract
During the confinement of COVID-19, learning about virtual and augmented reality grew exponentially; universities were the accelerators of this knowledge. Distance learning was the trigger to consolid ... [+]
During the confinement of COVID-19, learning about virtual and augmented reality grew exponentially; universities were the accelerators of this knowledge. Distance learning was the trigger to consolidate emerging technologies in education and professional life [1], including virtual reality (VR) and augmented reality (AR). Given the rising interest in virtual simulations, this paper targets authentic design challenges and how distributed collaboration may enhance the immersive learning potential by utilising network resource efficiency. According to the Institute for the Future of Education of the Tecnologico de Monterrey, in the Tec21 educational model, the most important part is the challenge, which is defined as a problematic situation posed by the partner trainer, and when analysed, a problema is defined by mutual agreement. The project is defined on this problem. One of our most essential training partners is CAETEC, where we carry out challenges ranging from precision agriculture to data science, experiment design, and forecasting [2] [3]. To 3D model this robot, we need to work with the former partner, whose headquarters are in Sweden, through a collaboration agreement between universities that pursue the same educational purpose. We will work with the University of Mälardalen on the design of the lessons and with the University of Mondragon on the interaction between humans and robots. This research results from joint work between three educational institutions with a multicultural and multidisciplinary project approach. [-]
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