基于沉浸式VFR三维地图可视化推进空中交通管制与管理培训的迭代设计方法。

Rafael N C Patrick, Tony Lee, Zach Desmit, Nathanyal Carter
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引用次数: 0

摘要

职业应用符合现代学习者偏好的创新工具对于空中交通管制/管理等安全关键职业的培训至关重要。本研究评估了虚拟现实视觉飞行规则3D地图可视化工具,旨在满足联邦航空管理局(FAA)的现代化目标。该工具使受训者沉浸在上下文准确的环境中,提高参与度和自主学习速度。与传统方法相比,大多数主题专家更喜欢3D学习,同时评论了与大学和FAA计划的潜在整合,以支持准备工作。未来的研究应该探索可扩展性,长期性能影响,以及个性化培训和可访问性的人工智能增强。这一创新弥补了学习偏好方面的代际差距,并及时满足了对训练有素的认证专业控制员的需求,突出了可获得的自定进度定制培训的价值。一个情境准确、成本效益高的培训系统可以改善知识获取,使受训者能够在传统课堂之外学习,支持快速决策和自我效能,标志着职业培训向前迈进了一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Iterative Design Method for Advancing Air Traffic Control and Management Training Through Immersive VFR 3D Map Visualization.

OCCUPATIONAL APPLICATIONSInnovative tools that align with modern learners' preferences are essential for training in safety-critical professions like Air Traffic Control/Management. This study evaluated a Virtual Reality Visual Flight Rules 3D Map Visualization Tool designed to meet the Federal Aviation Administration's (FAA) modernization goals. The tool immerses trainee in contextually accurate environments, enhancing engagement and self-paced learning. Most subject-matter experts favored 3D learning over traditional approaches, while commenting on potential integration into collegiate and FAA programs to support preparedness. Future research should explore scalability, long-term performance impact, and AI enhancements for personalized training and accessibility. This innovation bridges generational gaps in learning preferences and addresses the timely demand for well-trained certified professional controllers, highlighting the value of accessible self-paced customized training. A contextually accurate, cost-effective training system could improve knowledge acquisition and enable trainees to study beyond traditional classrooms, supporting rapid decision-making and self-efficacy - marking a step forward in occupational training.

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