Visualization of physical fields with augmented reality in teaching

Publikation: Beitrag in Buch/Bericht/KonferenzbandBeitrag in einem KonferenzbandBegutachtung

Abstract

Understanding physical effects occurring, for example, in the electromagnetic field, can be challenging. To ease the learning experience, it is beneficial to visualize and encourage interaction with the physical field. Augmented Reality (AR) can serve as a tool to visualize naturally invisible fields to help students understand physical effects. In this paper, we present a workflow to incorporate field results stemming from a FEM tool or simple analytical solutions into an augmented reality (AR) experience. We focus on providing a simple framework for educators to integrate this tool into school or university teaching. We present a workflow to process simulation results for AR and provide source material through a template and a guide so that educators can quickly translate their projects into (augmented) reality. The basis for this project is the game engine Unity, which can be used free of charge for educators. Combined with other free or open-source programs for visualization and preparation like openCFS and Paraview, this setup can be used freely by anybody for education.

Originalspracheenglisch
Titel24th International Conference on the Computation of Electromagnetic Fields, COMPUMAG 2023 - Proceedings
Herausgeber (Verlag)IEEEXplore
ISBN (elektronisch)9798350301052
DOIs
PublikationsstatusVeröffentlicht - 2023
Veranstaltung24th International Conference on the Computation of Electromagnetic Fields: COMPUMAG 2023 - Kyoto, Japan
Dauer: 22 Mai 202326 Mai 2023
https://www.compumag2023.com/content/

Konferenz

Konferenz24th International Conference on the Computation of Electromagnetic Fields
KurztitelCompumag 2023
Land/GebietJapan
OrtKyoto
Zeitraum22/05/2326/05/23
Internetadresse

ASJC Scopus subject areas

  • Computational Mathematics
  • Maschinenbau
  • Strahlung
  • Elektrotechnik und Elektronik
  • Modellierung und Simulation

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