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Mars curiosity rover mobility trends during the first 7 years

机译:火星好奇罗弗流动性趋势在前7年

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摘要

NASA's Mars Science Laboratory (MSL) Curiosity rover landed on Mars on August 6, 2012. In the 7 years between landing and August 6, 2019 (sol 2488), Curiosity has driven 21,318.5 m over a variety of terrain types and slopes, employing multiple drive modes with varying amounts of onboard autonomy. Curiosity's drive distances each sol have ranged from its shortest drive of 2.6 cm to its longest drive of 142.5 m, with an average drive distance of 28.9 m. Real-time human intervention is not possible during Curiosity's drives due to the latency in uplinking commands and downlinking telemetry. Instead, the operations team relies on Curiosity's fault protection, autonomous navigation, and visual odometry software to keep the rover safe during drives. During its first 7 years on Mars, Curiosity has attempted 738 drives. While 622 drives ran to completion, 116 drives were prevented or stopped early by Curiosity's fault protection software. The primary risks to mobility success have been wheel damage, wheel entrapment, progressive wheel sinkage, and the potential for hardware or cable failures that result in an inability to command one or more steer or drive actuators. In this paper, we describe Curiosity's mobility subsystem, mobility trends over the first 21.3 km of the mission, operational aspects of mobility fault protection, risks to continued mobility success, and risk mitigation strategies.
机译:美国宇航局的火星科学实验室(MSL)富裕的Rover于2012年8月6日登陆火星。在2019年的登陆和8月6日之间的7年(Sol 2488)之间,好奇心已经在各种地形类型和斜坡上驱动了21,318.5米,采用多种带有不同数量的车载自主权的驱动模式。好奇心的驱动距离每个溶胶的距离从最短的驱动器到2.6厘米的最短驱动器,最长的驱动器为142.5米,平均驱动距离为28.9米。由于上行链接命令和下行链路遥测的延迟,在奇妙的驱动过程中,无法实时人工干预。相反,运营团队依赖于好奇的故障保护,自主导航和视觉内径软件,以保持驱动器在驱动器期间安全。在火星的前7年期间,好奇心已经尝试了738个驱动器。虽然622个驱动器完成,但通过奇妙的故障保护软件,预防或停止了116个驱动器。移动性成功的主要风险已经是轮子损坏,轮夹,渐进式车轮减少,以及硬件或电缆故障的可能性,从而导致一个或多个转向或驱动器执行器。在本文中,我们描述了好奇心的流动子系统,移动性趋势超过了任务的第一个21.3公里,运营方面的流动性故障保护,持续的流动性成功的风险以及风险缓解策略。

著录项

  • 来源
    《Journal of Field Robotics》 |2021年第5期|759-800|共42页
  • 作者单位

    Mobility and Robotic Systems Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

    Mobility and Robotic Systems Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

    Mobility and Robotic Systems Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

    Engineering Operations for Surface Missions Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

    Mobility and Robotic Systems Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

    Mobility and Robotic Systems Jet Propulsion Laboratory California Institute of Technology Pasadena California USA;

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

    planetary robotics; wheeled robots;

    机译:行星机器人;轮式机器人;

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