Mathematical modeling and analysis of motion of a low-orbital space tether system

Z. Dong, Y. M. Zabolotnov, A. J. Li, C. Q. Wang

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摘要

The paper analyzes the motion of a low-orbital space tether system, which consists of a main spacecraft and a sub-spacecraft connected by a tether. The total tether length is several ten kilometers. We considered deployment phase, the free motion phase and the stabilization motion phase on a low and nearly circular orbit. In the stabilization motion phase the orbital altitude of the system is kept in a given range by a corrective thruster. The corrective thruster is located on the main spacecraft. The simulation for all motion phases of the system is based on a mathematical model with distributed parameters, in which the tether is considered as a sequence of point masses with one-sided elastic mechanical coupling.

源语言英语
文章编号012061
期刊Journal of Physics: Conference Series
1096
1
DOI
出版状态已出版 - 11 12月 2018
活动4th International Conference on Information Technology and Nanotechnology, ITNT 2018 - Samara, 俄罗斯联邦
期限: 24 4月 201827 4月 2018

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