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着陆小天体的自主GNC技术 被引量:4

Autonomous GNC Technology for Landing on Small Bodies
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摘要 由于目标小天体和地面站之间存在较长的通汛延迟,加之小天体的动力学环境复杂多变,传统的基于深空网的导航、制导与控制(GNC)模式已不再适合探测器着陆小天体。为了实现安全着陆小天体,探测器必须具有自主导航、制导和控制的能力。本文提出了一种着陆小天体极区的自主GNC方案:首先,基于对自然特征点的自动提取、跟踪,给出了一种着陆小天体的自主光学导航方案;接着,为了安全垂直着陆小天体的极区,设计了比例-微分控制器跟踪理想的下降轨迹、消除侧向位置和速度偏差;最后,通过数值仿真对本文所提方案的可行性进行了验证。 Due to long communication delay between target asteroid and base stations and complex mutable dynamic environment of small body, the traditional GNC mode based on deep space network (DSN) is no more suitable for landing spacecraft on small body. Probe must have the ability of autonomous GNC to perform landing safely. An autonomous GNC scheme for landing on small body polar region is presented in this paper, First, based on autonomous detection and tracking nature feature points, an autonomous optical navigation algorithm is built out; second, in order to achieve vertical landing, PD guidance control laws are designed to track desired descent trajectory and eliminate lateral position errors and velocity errors. Finally, the validity of the proposed scheme is confirmed by numerical simulation.
机构地区 哈尔滨工业大学
出处 《宇航学报》 EI CAS CSCD 北大核心 2006年第1期21-26,共6页 Journal of Astronautics
基金 863国家高技术研究发展计划(2003AA735080)
关键词 软着陆 小天体 自主GNC 特征跟踪 扩展卡尔曼滤波 Soft landing Small body Autonomous GNC Feature tracking Extended kahnan filter
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参考文献8

  • 1McInnes C R, Radice G. Line-of-sight guidance for descetlt to a minor solar system body[J], Journal of Guidance, Control and Dynamics, 1996, 19(3) :740- 742.
  • 2Misu T, Hashimoto T and Ninomiya K. Optical guidance for autonomous landing of spacecraft[J]. IEEE Transactions on Aerospace and Electronic Systems, 1999, 35(2) :459 - 472.
  • 3De J, Lafontaine. Autonomous spacecraft navigation and control forcomet landing [ J ], Journal of Guidance, Control and Dynamics,1992, 15(3):567- 576.
  • 4Dawson S, Potterveld C W, Konigsmann H and Early L, Autonomous controlled landing on cometary bodies, AAS 98 - 185.
  • 5German D and Friedlander A L, A simulation of orbits around asteroids using potential field modeling. AAS 91 - 182.
  • 6Benedetti A and Perona P. Real-time 2-D feature detection on a reconfigurable computer[ A]. Proceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition[ C ],1998 : 586 - 593.
  • 7S.Jianbo and T. Carlo. Good features to track[ A]. Proceedings of the IEEE Computer Society Conferenceon Computer Vision and Pattern Recognition[C], 1994:593 - 600.
  • 8Miller J, et al. Determination of Eros Physical Parameters for Near Earth Asteroid Rendezvous Orbit Phase Navigation. AAS 99 - 463.

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