TY - JOUR
T1 - Design of a Low-cost Net Capture CubeSat for Space Debris Removal
AU - Cheng, Yajie
AU - Shan, Minghe
AU - Shi, Lingling
AU - Lin, Yong
N1 - Publisher Copyright:
© 2022 by the International Astronautical Federation (IAF). All rights reserved.
PY - 2022
Y1 - 2022
N2 - With the development of space technology, the number of satellites launches, especially the CubeSats, is dramatically increased, that worsens the Earth orbit environment with space debris and poses a risk to the operational satellites. Therefore, active space debris removal must be performed as soon as possible. This paper provides a concept design of a CubeSat system to demonstrate the key technology of net capture method for removing CubeSat sized targets in a low-cost manner. The mission consists of a compact size CubeSat platform that will depart into two CubeSats, the chaser and the target. Net system installed on the chaser is capable of changing the shooting angle of the net, thus providing an adaptable capture of the target within a certain distance. At the end of capture, the chaser and the target are connected by a sub-tether configuration, and the chaser is under a risk of collision with the possibly tumbling target. Therefore, the collision avoidance control strategy is designed based on the pose control of the chaser to tow the target back to Earth safely.
AB - With the development of space technology, the number of satellites launches, especially the CubeSats, is dramatically increased, that worsens the Earth orbit environment with space debris and poses a risk to the operational satellites. Therefore, active space debris removal must be performed as soon as possible. This paper provides a concept design of a CubeSat system to demonstrate the key technology of net capture method for removing CubeSat sized targets in a low-cost manner. The mission consists of a compact size CubeSat platform that will depart into two CubeSats, the chaser and the target. Net system installed on the chaser is capable of changing the shooting angle of the net, thus providing an adaptable capture of the target within a certain distance. At the end of capture, the chaser and the target are connected by a sub-tether configuration, and the chaser is under a risk of collision with the possibly tumbling target. Therefore, the collision avoidance control strategy is designed based on the pose control of the chaser to tow the target back to Earth safely.
KW - collision avoidance
KW - net capture
KW - tether combined system
KW - variable angle shooting
UR - http://www.scopus.com/inward/record.url?scp=85167608436&partnerID=8YFLogxK
M3 - Conference article
AN - SCOPUS:85167608436
SN - 0074-1795
VL - 2022-September
JO - Proceedings of the International Astronautical Congress, IAC
JF - Proceedings of the International Astronautical Congress, IAC
T2 - 73rd International Astronautical Congress, IAC 2022
Y2 - 18 September 2022 through 22 September 2022
ER -