A pointing-based method for spacecraft attitude maneuver path planning under time-varying pointing constraints

被引:1
|
作者
He, Hanqing [1 ]
Shi, Peng [1 ]
Zhao, Yushan [1 ]
机构
[1] Beihang Univ, Sch Astronaut, Beijing 102206, Peoples R China
基金
中国国家自然科学基金;
关键词
Attitude maneuver path planning; Time-varying pointing constraint; Improved RRT-GoalBias method; Quaternion polynomial interpolation; Attitude motion spherical shell; SLEW MANEUVERS; REORIENTATION; OPTIMIZATION;
D O I
10.1016/j.asr.2022.05.058
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The requirement to observe moving targets raises the time-varying pointing constraint for spacecraft attitude maneuver, which is seldom considered in existing attitude maneuver path planning methods. Therefore, a pointing-based method for attitude maneuver path planning under time-varying pointing constraints is proposed. Considering that pointing constraints are exerted on the perceptional sensor of spacecraft, an improved rapidly-exploration random tree method is designed to obtain the rotational pointing nodes while satisfying the pointing constraints. To this end, the key point is to define the time property of sampled nodes to determine their relations with time-varying constraints. Subsequently, the attitude quaternion nodes are generated according to pointing nodes. Finally, to find a continuous quaternion curve passing through quaternion nodes, component-wise and piecewise quaternion interpolation functions are adopted to calculate the angular velocity and control torque by the inverse dynamics method. The attitude motion spherical shell is designed by using the radial component to represent the timeline to visually display the satisfaction of time-varying constraints. Simulation results are used to validate the feasibility of the proposed method. (c) 2022 COSPAR. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:1062 / 1077
页数:16
相关论文
共 50 条
  • [11] Parameter Space Discretization Method for Attitude Motion Planning under Time-variant Pointing Constraints
    Zhu Z.
    Xu R.
    Li Z.
    Zhu S.
    Long J.
    Zhu L.
    Yuhang Xuebao/Journal of Astronautics, 2024, 45 (03): : 352 - 365
  • [12] Control barrier function-based fixed-time spacecraft attitude control under pointing constraints
    Wang, Xin-Zheng
    Wu, Fusheng
    Shi, Xiao-Ning
    Zhou, Zhi-Gang
    Zhou, Di
    INTERNATIONAL JOURNAL OF CONTROL, 2025,
  • [13] Energy-optimal spacecraft attitude maneuver path-planning under complex constraints
    Wu, Changqing
    Han, Xiaodong
    ACTA ASTRONAUTICA, 2019, 157 : 415 - 424
  • [14] Rapid search method for a spacecraft attitude maneuver path with multiple constraints
    Wang, Zhuo
    Xu, Rui
    AEROSPACE SCIENCE AND TECHNOLOGY, 2021, 117
  • [15] Time-varying sliding mode control for spacecraft attitude maneuver with angular velocity constraint
    Cong, Binglong
    Liu, Xiangdong
    Chen, Zhen
    Ren, Xianren
    2011 CHINESE CONTROL AND DECISION CONFERENCE, VOLS 1-6, 2011, : 670 - 674
  • [16] Adaptive fixed-time sliding mode control for spacecraft reorientation with attitude pointing constraints and disturbance rejection
    Guan, Tao
    Zhang, Kai
    Li, Bin
    Guan, Xiaoyi
    Yiu, Ka-Fai Cedric
    ISA TRANSACTIONS, 2023, 143 : 50 - 58
  • [17] Rapid attitude maneuver planning method based on progressive path transfer
    Wang Z.
    Xu R.
    Li Z.
    Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2022, 43 (05):
  • [18] Attitude maneuver control of spacecraft based on second⁃order fully actuated system under attitude constraints
    Lu M.
    Chen X.
    Wu F.
    Cao X.
    Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2024, 45 (01):
  • [19] Exponential Time-varying Sliding Mode Control for Large Angle Attitude Eigenaxis Maneuver of Rigid Spacecraft
    Cong Binglong
    Liu Xiangdong
    Chen Zhen
    CHINESE JOURNAL OF AERONAUTICS, 2010, 23 (04) : 447 - 453
  • [20] Global Time-Varying Path Planning Method Based on Tunable Bezier Curves
    Jia, Longfei
    Zeng, Si
    Feng, Lei
    Lv, Bohan
    Yu, Zhiyuan
    Huang, Yuping
    Song, Qi
    Zhao, Qinglei
    APPLIED SCIENCES-BASEL, 2023, 13 (24):