期刊文献+

Angles-only relative navigation in highly elliptical orbits

Angles-only relative navigation in highly elliptical orbits
下载PDF
导出
摘要 For angles-only relative navigation system only measures line-of-sight information,there are inherent problems in the ability to determine the range between Chaser and Target. Angles-only relative navigation is an attractive alternative for inspecting or rendezvous with noncooperative target,if adequate accuracy can be achieved. Angles-only relative navigation model considering J2 perturbation is presented for tracking and rendezvous with noncooperative target in highly elliptical orbit. Impulsive out-of-plane maneuvers of the Chaser are used to improve the navigation accuracy. The first impulse burns in cross-track directions to change the orbit inclination of the Chaser. The second impulse burns after one orbit period to change the orbit of the Chaser back. The simulation results show that the relative navigation system without maneuvers can't correct the initial state errors,while impulsive out-ofplane maneuvers of the Chaser improves the navigation accuracy. Angles-only relative navigation with chaser vehicle maneuvers to improve observability is effective when the spacecrafts are in highly elliptical orbits. For angles-only relative navigation system only measures line-of-sight information, there are inherent problems in the ability to determine the range between Chaser and Target. Angles-only relative navigation is an attractive ahemative for inspecting or rendezvous with noncooperative target, if adequate accuracy can be achieved. Angles-only relative navigation model considering J2 perturbation is presented for tracking and rendezvous with noncooperative target in highly elliptical orbit. Impulsive out-of-plane maneuvers of the Chaser are used to improve the navigation accuracy. The first impulse burns in cross-track directions to change the orbit inclination of the Chaser. The second impulse burns after one orbit period to change the orbit of the Chaser back. The simulation results show that the relative navigation system without maneuvers can' t correct the initial state errors, while impulsive out-ofplane maneuvers of the Chaser improves the navigation accuracy. Angles-only relative navigation with chaser vehicle maneuvers to improve observability is effective when the spacecrafts are in highly elliptical orbits.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2010年第4期575-577,共3页 哈尔滨工业大学学报(英文版)
关键词 SPACECRAFT relative navigation noncooperative target elliptical orbit Kalman filtering spacecraft relative navigation noncooperative target elliptical orbit Kalman filtering
  • 相关文献

参考文献5

  • 1Chari R J V. Autonomous Orbital Rendezvous Using Angles-Only Navigation. Cambridge: Massachusetts Institute of Technology, 2001.
  • 2Woffinden D. On-orbit Satellite Inspection Navigation and △VAnalysis. Cambridge: Massachusetts Institute of Technology, 2004.
  • 3Yim J R, Crassidis J L, Junkins J L. Autonomous orbit navigation of two spacecraft system using relative line of sight vector measurements. AAS, 2004. AAS 04 - 257.
  • 4Woffinden D, Geller D. Observability criteria for anglesonly navigation. IEEE Transactions on Aerospace and Electronic Systems, 2009,45 (3) : 1194 - 1208.
  • 5Olsen C D. Characterization of the Relative Motion of Rendezvous Between Vehicles in Proximate, Highly Elliptic Orbits. Austin: University of Texas at Austin, 2001.

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