DocumentCode
2438369
Title
Stability and Reconfiguration Analysis of a Circularly Spinning 2-Craft Coulomb Tether
Author
Schaub, H. ; Hussein, I.
Author_Institution
Virginia Tech., Blacksburg
fYear
2007
fDate
3-10 March 2007
Firstpage
1
Lastpage
11
Abstract
The concept of a spinning 2-craft Coulomb tether is introduced. Here a physical tether is replaced with an electrostatic force field resulting in an attractive Coulomb force between the 2-craft. The spacecraft charge is assumed to be regulated with an active charge servo system. The open-loop stability of a Coulomb tether with constant spacecraft charges is investigated. The reduced equations of motion for a deep space mission are obtained and linearized to determine eigenvalues of the perturbed motion. This analysis shows that if the plasma Debye length is smaller than the spacecraft separation distance the radial motion is guaranteed to be unstable. For larger Debye lengths the nonlinear radial motion is locally stable. The perturbed out-of-plane motion is shown to always be stable regardless of Debye length. Further, open-loop charge solutions are obtained to perform reconfiguration where the circular orbit radius is changed to a new value. This maneuver is related to the classical Hohmann transfer orbit between circular orbits. However, in the Coulomb tether concept the reconfiguration is achieved by varying the effective gravitational parameter through spacecraft charge changes.
Keywords
aerospace control; open loop systems; space vehicles; stability; Hohmann transfer orbit; active charge servo system; circular orbit radius; circularly spinning 2-craft Coulomb tether; motion control; open-loop stability; plasma Debye length; radial motion; reconfiguration analysis; spacecraft charge; stability analysis; Eigenvalues and eigenfunctions; Electrostatics; Motion analysis; Nonlinear equations; Plasma stability; Servomechanisms; Space missions; Space vehicles; Spinning; Stability analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2007 IEEE
Conference_Location
Big Sky, MT
ISSN
1095-323X
Print_ISBN
1-4244-0524-6
Electronic_ISBN
1095-323X
Type
conf
DOI
10.1109/AERO.2007.352670
Filename
4161548
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