期刊文献+

面向星下点轨迹自主维持的星载软件算法与实现

Onboard Software Algorithm and Implementation for Autonomy Orbit Maintenance with Ground Track
下载PDF
导出
摘要 为实现单星星下点轨迹维持和保持编队卫星间构型关系,提供了星载软件解决方案.给出了卫星漂移模型,并研究了轨控实施策略、轨迹实时匹配等关键技术.依托星务硬件平台,通过软件实现了样本信息处理、控制策略决断、状态自主设置、轨控参数计算等控制过程.以轨道仿真数据为输入,对软件输出与理论结果进行了比较,验证了轨控软件实现的可行性、正确性.自主轨道维持技术将进一步提升卫星的智能化、自动化水平. This paper provides an onboard-software solution for maintaining satellite orbit with sub-satellite point track and keeping formation of constellation. These key technologies about the model of sub-satellite point track drifting, strategy of orbit controlling and method to real-time match track are researched. Based on on-board housekeeping platform, the procedures about processing of exemplars, deciding of orbit control, self-setting of state, and computing of orbit control parameters are implemented by software. With simulated orbit data as input, the software output and theory results are compared. The feasibility and correctness of software are verified. The smart and automatic level of satellites will be promoted further by the technology of autonomy orbit maintenance.
出处 《空间控制技术与应用》 CSCD 北大核心 2016年第6期52-57,共6页 Aerospace Control and Application
关键词 编队卫星 自主 轨道维持 constellation autonomy orbit maintenance
  • 相关文献

参考文献3

二级参考文献26

  • 1任萱.人造卫星轨道力学[M].国防科学技术大学出版社,1988..
  • 2杨嘉墀.航天器轨道动力学与控制(上)[M].北京:中国宇航出版社,2005.
  • 3丁溯泉,张波,刘世勇.STK在航天任务仿真分析中的应用[M].北京:国防工业出版社,2011.
  • 4徐矛,康建勇.航天科技基础[J].北京:国防工业出版社,2008.
  • 5PETROPOULOS A E. Refinements to the Qlaw for low-thrust orbit transfers[J]. Advances in the Astronautical Sciences, 2005,120 (1) : 963-982.
  • 6CASALINO L, COLASURDO G. Improved Edel- baum:s approach to optimize low earth/geostationary orbits low-thrust transfers [J]. Journal of Guidance, Control and Dynamics,2007,30(5):1504-1510.
  • 7FLORIO S D,AMICO S D. Optimal autonomous orbit control of remote sensing spacecraft[Z]. Germany: Space Flight Technology Department, German Aerospace Center(DLR), 2009.
  • 8Krueger J K. Closesat: perigee-lowering techniques and preliminary design for a smaU optical imaging satellite operating in very low earth orbit [ D ]. Cambridge: Massachusetts Institute of Technology, 2010.
  • 9Kuijper D, Matatoros M A G. Goce flight dynamics operations from an orbital perspective [ J ]. Journal of Aerospace Engineering, Sciences and Applications, 2012, 2 (4) : 93 - 106.
  • 10Atsushi N, Masanori H, Masayoshi U. The study of a super low altitude satellite [ C ]. 58th International Astronautical Congress, 2007, IAC -07 - D1.4.06.

共引文献16

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部