Mission analysis on removal of space debris with space-based laser

被引:2
|
作者
Wang W. [1 ]
Li Y. [1 ]
Luo W. [2 ]
Zhang F. [2 ]
Zhang J. [3 ]
机构
[1] Space Engineering University, Beijing
[2] Institute of Applied Physics and Computational Mathematics, Beijing
[3] Xi'an Satellite Control Center, Xi'an
关键词
Mission analysis; Pulse width; Space debris removal; Space-based laser; Velocity increment;
D O I
10.3969/j.issn.1001-506X.2019.06.27
中图分类号
学科分类号
摘要
This paper studies the mission of space debris removal with space-based laser debris from the two aspects of space-based laser technology parameters and space debris removal demand. Based on the transmission mechanism of laser supported detonation wave, the change rule of laser ablation thrust is analyzed, the principle that the short pulse width laser is suitable for the task of debris removal is revealed, and the thrust model of laser ablating debris is derived. The typical laser parameters affecting the thrust are studied. The general solution model of laser power density and light spot diameter are comparing summarized. The mathematical model among debris velocity increment and impulse coupling coefficient and the pulse number is built for the optimum coupling condition. From two aspects of debris size and orbital area, the necessity that the sun synchronous orbit 1~10 cm debris will be as the removal object is analyzed. The operation model under the condition of the encounter of space-based laser and debris is proposed based on the rationality of removal mission. The removal distance and time window is proposed. The evaluation model of the debris removal effect with space-based laser is established based on the high increment of perigee by the orbital dynamics knowledge. The case analysis shows the feasibility with the space-based laser to remove debris. The research results can provide reference for relevant technical research and mission design. © 2019, Editorial Office of Systems Engineering and Electronics. All right reserved.
引用
收藏
页码:1374 / 1382
页数:8
相关论文
共 32 条
  • [11] Early J.T., Bibeau C., Phipps C., Space debris de-orbiting by vaporization impulse using short pulse laser, Proc. of the International Society for Optical Engineering, pp. 441-452, (2004)
  • [12] Rubenchik A.M., Barty C.P.J., Beach R.J., Et al., Laser systems for orbital debris removal, Proc. of the AIP Conference, pp. 347-353, (2010)
  • [13] Chang H., Jin X., Hong Y.J., Et al., Modeling and simulation on ground-based lasers cleaning space debris, Acta Aeronautica et Astronautica Sinica, 33, 6, pp. 994-1001, (2012)
  • [14] Wang C.L., Zhang Y., Wang K.P., Strategy of removing space debris using ground-based lasers, Journal of Beijing University of Aeronautics and Astronautics, 41, 11, pp. 2137-2143, (2015)
  • [15] Schall W., Laser radiation for cleaning space debris from lower earth orbits, Journal of Spacecraft and Rockets, 39, 1, pp. 81-91, (2002)
  • [16] Phipps C.R., L'ADROIT-a spaceborne ultraviolet laser system for space debris clearing, Acta Astronautica, 104, 1, pp. 243-255, (2014)
  • [17] Choi H., Sang R.S.P., Assessment study of small space debris removal by laser satellites, Recent Patents on Space Technology, 2, 2, pp. 116-122, (2012)
  • [18] Phipps C., A laser-optical system to re-enter or lower low earth orbit space debris, Acta Astronautica, 93, pp. 418-429, (2014)
  • [19] Shen S., Jin X., Chang H., Cleaning space debris with a space-based laser system, China Journal Aeronautics, 27, 4, pp. 805-811, (2014)
  • [20] Soulard R., Quinn M.N., Tajima T., Et al., ICAN: a novel laser architecture for space debris removal, Acta Astronautica, 105, 1, pp. 192-200, (2014)