• Infrared and Laser Engineering
  • Vol. 49, Issue 8, 20200203 (2020)
Zhaobin Hu1, Xing Jin2, and Hao Chang2
Author Affiliations
  • 1Lunar Exploration and Space Engineering Centre, Beijing 100089, China
  • 2Space Engineering University of PLA, Beijing 101416, China
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    DOI: 10.3788/IRLA20200203 Cite this Article
    Zhaobin Hu, Xing Jin, Hao Chang. Concept of laser de-tumbling and its space-based application for space-based spinning target[J]. Infrared and Laser Engineering, 2020, 49(8): 20200203 Copy Citation Text show less
    Schematic diagram of applied mechanical pulse force
    Fig. 1. Schematic diagram of applied mechanical pulse force
    Actual picture of brush
    Fig. 2. Actual picture of brush
    Diagram of ion beam de-tumbling
    Fig. 3. Diagram of ion beam de-tumbling
    Schematic diagram of eddy current de-tumbling
    Fig. 4. Schematic diagram of eddy current de-tumbling
    Eddy current braking system
    Fig. 5. Eddy current braking system
    Schematic diagram of electrostatic racemization
    Fig. 6. Schematic diagram of electrostatic racemization
    Laser ablation de-tumbling system and typical abandoned target shape
    Fig. 7. Laser ablation de-tumbling system and typical abandoned target shape
    Schematic diagram of space-based laser de-tumbling concept
    Fig. 8. Schematic diagram of space-based laser de-tumbling concept
    Concept characteristics and its diagram of laser de-tumbling
    Fig. 9. Concept characteristics and its diagram of laser de-tumbling
    Laser irradiation direction and laser ablation force direction with cylindrical debris
    Fig. 10. Laser irradiation direction and laser ablation force direction with cylindrical debris
    Changes of angular velocity ωxb of debris with the size of 25 cm/24 cm/50 cm
    Fig. 11. Changes of angular velocity ωxb of debris with the size of 25 cm/24 cm/50 cm
    Changes of Euler angle φ of the debris with the size of 25 cm/24 cm/50 cm
    Fig. 12. Changes of Euler angle φ of the debris with the size of 25 cm/24 cm/50 cm
    Variation trend of semimajor axis, apogee and perigee with the debris size of 25 cm/24 cm/50 cm
    Fig. 13. Variation trend of semimajor axis, apogee and perigee with the debris size of 25 cm/24 cm/50 cm
    Variation trend of the distance and the radius vector between the space-based laser platform and the debris with the debris size of 25 cm/24 cm/50 cm
    Fig. 14. Variation trend of the distance and the radius vector between the space-based laser platform and the debris with the debris size of 25 cm/24 cm/50 cm
    Variation trend of longitude ascending node, orbit inclination and eccentricity with the debris size of 25 cm/24 cm/50 cm
    Fig. 15. Variation trend of longitude ascending node, orbit inclination and eccentricity with the debris size of 25 cm/24 cm/50 cm
    Zhaobin Hu, Xing Jin, Hao Chang. Concept of laser de-tumbling and its space-based application for space-based spinning target[J]. Infrared and Laser Engineering, 2020, 49(8): 20200203
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