中国科技核心期刊

中文核心期刊

CSCD来源期刊

空间控制技术与应用 ›› 2024, Vol. 50 ›› Issue (4): 17-25.doi: 10.3969/j.issn.1674 1579.2024.04.003

• 论文与报告 • 上一篇    下一篇

 一种基于轨迹外推的成像卫星随动观测方法

  

  1. 航天器在轨故障诊断与维修重点实验室
  • 出版日期:2024-08-26 发布日期:2024-09-29
  • 基金资助:
    国家自然科学基金资助项目(62363001)

A Follow Up Observation Method for Imaging Satellites Based on Trajectory Extrapolation

  • Online:2024-08-26 Published:2024-09-29

摘要: 相机与卫星固连的成像卫星自主任务规划算法受卫星自身运算和存储能力限制,其在工程应用上尚处于发展阶段,成像任务规划主要依托地面人工经验开展.本文根据卫星观测的高速目标和低速目标不同运动特性,结合卫星平台姿态机动性能,提出了一种基于轨迹外推的成像卫星随动观测规划算法.该方法利用地面系统弥补了星上运算和存储能力的不足,实现了快速目标跟踪和轨迹预报,提高了响应时效性,延长了卫星成像时间.通过拉格朗日插值不断地预测目标轨迹变化构建最优目标函数,间歇式地计算随动策略,可自主实现高速、低速目标全程成像.

关键词: 成像卫星, 随动观测, 低速目标, 高速目标

Abstract: With the increasing demand for satellite earth observation, the importance of missing planning for imaging satellites has become prominent. Currently, the autonomous task planning algorithm for imaging satellites is limited by the satellite’s own computational and storage capabilities, and its engineering application is still in the developmental stage. Imaging mission planning mainly relies on manual expertise from the ground. In this paper, based on the different motion characteristics of high speed and low speed targets in satellite observation, combined with the satellite platform’s attitude maneuvering performance, an imaging satellite adaptive observation planning algorithm based on orbit extrapolation is proposed. By continuously predicting changes in the target trajectory using Lagrange interpolation to construct an optimal objective function,intermittent pure pursuit is computed, and adaptive observations are implemented. This method utilizes the ground system to compensate for the limitations of onboard computation and storage capabilities, achieving rapid target tracking and trajectory prediction, improving response timeliness, and extending satellite imaging time.

Key words: imaging satellite, target tracking observation, low speed target, high speed target

中图分类号: 

  • V57