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AMADEE-18: Vision-Based Unmanned Aerial Vehicle Navigation for Analog Mars Mission (AVI-NAV)

机译:Amadee-18:基于视觉的模拟火星任务的无人驾驶飞行器导航(AVI-NAV)

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摘要

As a part of the AMADEE-18 analog Mars mission, designed to study challenges associated with human-based exploration of the Red Planet, we focused our team efforts on testing means to localize an unmanned aerial vehicle (UAV) on Mars. Robot helicopters, such as the one selected for a technology demonstration as a part of NASA's Mars 2020 mission, are small and their performance is computationally limited. An essential aspect of navigation and path planning of an autonomous helicopter is accurate localization of the robot. In the absence of a global positioning system, a computationally efficient localization technology that can be applied on Mars is visual-inertial odometry (VIO). The AMADEE-18 mission provided an opportunity to test the feasibility of a state-of-the-art VIO algorithm and the camera in a Mars-like analog environment. The flight datasets included different terrain structures that challenged the functionality of VIO algorithms. The experiment has yielded valuable insights into the desired surface structure, texture, and mission times for surface relative navigation of UAV on Mars.
机译:作为Amadee-18的模拟火星任务的一部分,旨在研究与红色星球的基于人类探索相关的挑战,我们将团队努力在测试手段上努力,以在火星上定位无人驾驶的空中车辆(UAV)。机器人直升机,例如选择用于技术演示的一部分作为美国航空航天局的火星2020任务的一部分,较小,其性能是计算限制的。自主直升机的导航和路径规划的重要方面是机器人的准确本地化。在没有全球定位系统的情况下,可以在火星上应用的计算有效的本地化技术是视觉惯性内径术(VIO)。 AMADEE-18任务提供了一个机会,可以在MARS的模拟环境中测试最先进的VIO算法和相机的可行性。飞行数据集包括挑战VIO算法的功能的不同地形结构。该实验使有价值的见解,进入了所需的表面结构,质地和任务时间,以实现无人机的表面相对导航在火星上的相对导航。

著录项

  • 来源
    《Astrobiology》 |2020年第11期|1321-1337|共17页
  • 作者单位

    Univ Klagenfurt Dept Smart Syst Technol Control Networked Syst Grp Univ Str 65-67 A-9020 Klagenfurt Austria;

    Univ Klagenfurt Dept Smart Syst Technol Control Networked Syst Grp Univ Str 65-67 A-9020 Klagenfurt Austria;

    Univ Klagenfurt Dept Smart Syst Technol Control Networked Syst Grp Univ Str 65-67 A-9020 Klagenfurt Austria;

    Univ Klagenfurt Dept Smart Syst Technol Control Networked Syst Grp Univ Str 65-67 A-9020 Klagenfurt Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Analog; Earth Mars; Extreme environments; Mars; Mars Exploration Rovers; State estimation;

    机译:模拟;地球火星;极端环境;火星;火星探索流浪;国家估计;

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