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Dynamic analysis of a tethered satellite system for space debris capture

Authors
Lim, JonghyukChung, Jintai
Issue Date
Dec-2018
Publisher
SPRINGER
Keywords
Tethered satellite; Space debris capture; Nonlinear equations; Dynamic behavior; Absolute nodal coordinate formulation
Citation
NONLINEAR DYNAMICS, v.94, no.4, pp 2391 - 2408
Pages
18
Indexed
SCI
SCIE
SCOPUS
Journal Title
NONLINEAR DYNAMICS
Volume
94
Number
4
Start Page
2391
End Page
2408
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/5056
DOI
10.1007/s11071-018-4498-1
ISSN
0924-090X
1573-269X
Abstract
Herein we analyze the dynamic behavior of a tethered satellite system for space debris capture, considering the large deformation of a tether. The tethered satellite system is modeled as two point masses and a string, and the equations of motion of the tethered satellite system are derived by using the absolute nodal coordinate formulation. To calculate the net velocity after debris capture, equations are established describing the momentum exchange between the net and the space debris. By using this model, the dynamic responses of the tethered satellite system after debris capture are calculated for the variations of the capture angles and capture velocities of the debris. This allows analysis of the orbital response of the tethered satellite system and the large tensions arising from tether tumbling. Finally, we analyze the effects of varying system parameters of the tethered satellite system and the space debris upon the dynamic responses.
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Chung, Jintai
ERICA 공학대학 (DEPARTMENT OF MECHANICAL ENGINEERING)
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