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An Iterative Design Method for Advancing Air Traffic Control and Management Training Through Immersive VFR 3D Map

Rafael N C Patrick1, Tony Lee1, Zach Desmit2

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Summary
This summary is machine-generated.

Virtual Reality (VR) 3D map visualization tools enhance Air Traffic Control training by engaging modern learners. Subject-matter experts preferred this immersive approach over traditional methods for improved preparedness.

Keywords:
Accessible trainingair traffic control/management (ATC/ATM)human-technology interaction (HTi)iterative designsubject matter experts (SMEs)virtual reality (VR)

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Area of Science:

  • Aviation training technology
  • Human-computer interaction in aviation
  • Virtual Reality applications

Background:

  • Modern learners in safety-critical professions require innovative training tools.
  • Traditional training methods may not align with current learning preferences.
  • The Federal Aviation Administration (FAA) seeks to modernize training approaches.

Purpose of the Study:

  • To evaluate a Virtual Reality Visual Flight Rules 3D Map Visualization Tool.
  • To assess the tool's alignment with FAA modernization goals.
  • To gauge subject-matter expert (SME) preference for VR training.

Main Methods:

  • Development and implementation of a VR 3D map visualization tool.
  • Immersion of trainees in contextually accurate virtual environments.
  • Gathering feedback from SMEs on the effectiveness and preference of the VR tool.

Main Results:

  • Most SMEs favored the 3D VR learning approach over traditional methods.
  • The tool enhances trainee engagement and facilitates self-paced learning.
  • Potential for integration into collegiate and FAA training programs was identified.

Conclusions:

  • VR 3D map visualization offers a promising, cost-effective training solution for Air Traffic Control.
  • This technology addresses generational learning gaps and supports the demand for certified controllers.
  • Future research should focus on scalability, long-term impact, and AI-driven personalization.