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Design of small hand-launched solar-powered UAVs: From concept study to a multi-day world endurance record flight

机译:小型手动太阳能无人机的设计:从概念研究到为期多天的世界耐力飞行记录

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摘要

We present the development process behind AtlantikSolar, a small 6.9 kg hand-launchable low-altitude solar-powered unmanned aerial vehicle (UAV) that recently completed an 81-hour continuous flight and thereby established a new flight endurance world record for all aircraft below 50 kg mass. The goal of our work is to increase the usability of such solar-powered robotic aircraft by maximizing their perpetual flight robustness to meteorological deteriorations such as clouds or winds. We present energetic system models and a design methodology, implement them in our publicly available conceptual design framework for perpetual flight-capable solar-powered UAVs, and finally apply the framework to the AtlantikSolar UAV. We present the detailed AtlantikSolar characteristics as a practical design example. Airframe, avionics, hardware, state estimation, and control method development for autonomous flight operations are described. Flight data are used to validate the conceptual design framework. Flight results from the continuous 81-hour and 2,338 km covered ground distance flight show that AtlantikSolar achieves 39% minimum state-of-charge, 6.8 h excess time and 6.2 h charge margin. These performance metrics are a significant improvement over previous solar-powered UAVs. A performance outlook shows that AtlantikSolar allows perpetual flight in a 6-month window around June 21 at mid-European latitudes, and that multi-day flights with small optical- or infra red-camera payloads are possible for the first time. The demonstrated performance represents the current state-of-the-art in solar-powered low-altitude perpetual flight performance. We conclude with lessons learned from the three-year AtlantikSolar UAV development process and with a sensitivity analysis that identifies the most promising technological areas for future solar-powered UAV performance improvements.
机译:我们介绍了AtlantikSolar背后的开发过程,这是一款6.9公斤的小型手动发射低空太阳能无人机(UAV),该飞机最近完成了81小时的连续飞行,从而为所有50岁以下的飞机建立了新的飞行耐力世界纪录公斤质量。我们的工作目标是通过最大限度地提高其对气象恶化(如云或风)的永久飞行鲁棒性来提高此类太阳能机器人飞机的可用性。我们提出了充满活力的系统模型和设计方法,并在我们可公开获得的概念性设计框架中将其实现,以实现永久飞行的太阳能无人机,最后将其应用于AtlantikSolar无人机。我们将详细介绍AtlantikSolar特性,作为一个实际的设计示例。描述了用于自主飞行操作的机身,航空电子设备,硬件,状态估计和控制方法的开发。飞行数据用于验证概念设计框架。连续81小时和2338 km的覆盖地面距离飞行的飞行结果表明,AtlantikSolar达到了39%的最低充电状态,6.8 h的额外时间和6.2 h的充电裕度。这些性能指标是对以前的太阳能无人机的重大改进。性能前景表明,AtlantikSolar可以在6月21日前后在欧洲中纬度地区进行为期6个月的永久飞行,并且首次使用小型光学或红外相机有效载荷进行多日飞行是可能的。演示的性能代表了当前太阳能低空永久飞行性能的最新水平。最后,我们从为期三年的AtlantikSolar无人机开发过程中汲取的经验教训以及敏感性分析确定了未来太阳能无人机性能改进中最有希望的技术领域。

著录项

  • 来源
    《Journal of Field Robotics》 |2017年第7期|1352-1377|共26页
  • 作者单位

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

    Autonomous Systems Lab, Swiss Federal Institute of Technology Zurich (ETH Zurich), Switzerland;

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

    UAV; system design; solar-powered; perpetual flight;

    机译:无人机系统设计;太阳能;永久飞行;

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