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RADAR Based Collision Avoidance for Unmanned Aircraft Systems.

机译:基于RADAR的无人飞机系统防撞技术。

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摘要

Unmanned Aircraft Systems (UAS) have become increasingly prevalent and will represent an increasing percentage of all aviation. These unmanned aircraft are available in a wide range of sizes and capabilities and can be used for a multitude of civilian and military applications. However, as the number of UAS increases so does the risk of mid-air collisions involving unmanned aircraft. This dissertation aims to present one possible solution for addressing the mid-air collision problem in addition to increasing the levels of autonomy of UAS beyond waypoint navigation to include preemptive sensor-based collision avoidance. The presented research goes beyond the current state of the art by demonstrating the feasibility and providing an example of a scalable, self-contained, RADAR-based, collision avoidance system. The technology described herein can be made suitable for use on a miniature (Maximum Takeoff Weight < 10kg) UAS platform. This is of paramount importance as the miniature UAS field has the lowest barriers to entry (acquisition and operating costs) and consequently represents the most rapidly increasing class of UAS.
机译:无人飞机系统(UAS)变得越来越普遍,并将在所有航空领域中所占的百分比不断增加。这些无人飞机具有各种尺寸和功能,可用于多种民用和军事应用。但是,随着UAS数量的增加,涉及无人驾驶飞机的空中碰撞风险也会增加。本文的目的是提出一种解决空中碰撞问题的可能解决方案,除了增加UAS在航路点导航之外的自治程度之外,还包括基于抢先传感器的碰撞避免。通过证明可行性并提供可扩展的,自包含的,基于雷达的防撞系统的示例,所提出的研究超越了当前的技术水平。可以使本文所述的技术适合于在微型(最大起飞重量<10kg)UAS平台上使用。这是最重要的,因为微型UAS领域的进入壁垒(获取和运营成本)最低,因此代表了UAS增长最快的一类。

著录项

  • 作者

    Moses, Allistair A.;

  • 作者单位

    University of Denver.;

  • 授予单位 University of Denver.;
  • 学科 Engineering Robotics.;Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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