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A MOTION PLATFORM INTEGRATED UAV PILOT TRAINING AND EVALUATION SYSTEM FOR FUTURE CIVILIAN APPLICATIONS

机译:面向未来民航业的运动平台集成无人机飞行员训练与评估系统

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摘要

The potential for UAVs to benefit the civilian consumer is driving the demand for the integration of these vehicles into the national airspace. With UAV accidents occurring at a significantly higher rate than commercial airlines, the urgent issue becomes designing systems and protocols that can prevent UAV accidents, better train UAV operators and augment pilot performance. This paper presents three directions of research stemming from the goal of a UAV piloting and training system. Research direction one is the development of a research platform to assess UAV pilot skills and recreate the sensation of shared fate for UAV pilots. The second research direction looks at utilizing flight simulation packages to create virtual tools for training UAV pilots. The third direction covers the investigation of UAV's in near earth environments as future applications will place UAVs in these areas.
机译:无人机使民用消费者受益的潜力正在推动将这些车辆纳入国家领空的需求。由于无人机事故的发生率远高于商业航空公司,因此迫切需要解决的问题是设计能够预防无人机事故,更好地培训无人机操作员并提高飞行员性能的系统和协议。本文介绍了从无人机驾驶培训系统的目标出发的三个研究方向。研究方向之一是开发一个评估平台,以评估无人机飞行员的技能并重塑无人机飞行员的命运。第二个研究方向是利用飞行模拟软件包创建用于训练无人机飞行员的虚拟工具。第三个方向是对近地环境中的无人机的调查,因为将来的应用会将无人机放置在这些区域。

著录项

  • 来源
  • 会议地点 Ann Arbor MI(US);Ann Arbor MI(US);Ann Arbor MI(US);Ann Arbor MI(US);Ann Arbor MI(US)
  • 作者

    James T. Hing; Paul Y. Oh;

  • 作者单位

    Department of Mechanical Engineering and Mechanics Drexel University Philadelphia, PA 19104;

    Department of Mechanical Engineering and Mechanics Drexel University Philadelphia, PA 19104;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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