Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains

We address the problem of state feedback translational motion control of a spacecraft formation through a modified sliding surface controller using variable gains and I^2 action for disturbance rejection. The exponential varying gains ensure faster convergence of the state trajectories during attitu...

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Main Authors: R. Schlanbusch, R. Kristiansen
Format: Article
Language:English
Published: Norwegian Society of Automatic Control 2013-01-01
Series:Modeling, Identification and Control
Subjects:
Online Access:http://www.mic-journal.no/PDF/2013/MIC-2013-1-2.pdf
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spelling doaj-adf0b18f7e5c41708f33dfdb31bfd98d2020-11-24T23:14:32ZengNorwegian Society of Automatic ControlModeling, Identification and Control0332-73531890-13282013-01-01341111810.4173/mic.2013.1.2Control of Spacecraft Formation with Disturbance Rejection and Exponential GainsR. SchlanbuschR. KristiansenWe address the problem of state feedback translational motion control of a spacecraft formation through a modified sliding surface controller using variable gains and I^2 action for disturbance rejection. The exponential varying gains ensure faster convergence of the state trajectories during attitude maneuver while keeping the gains small (and the system less stiff) for station keeping. Integral action is introduced for rejection of disturbances with a constant nonzero mean such as aerodynamic drag. A direct consequence is a drop in energy consumption when affected by sensor noise and a decrease in size of the error states residual when operating close to the equilibrium point. A large number of simulation results are presented to show the control performance.http://www.mic-journal.no/PDF/2013/MIC-2013-1-2.pdfSpacecraft FormationTranslational ControlDisturbance Rejection
collection DOAJ
language English
format Article
sources DOAJ
author R. Schlanbusch
R. Kristiansen
spellingShingle R. Schlanbusch
R. Kristiansen
Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
Modeling, Identification and Control
Spacecraft Formation
Translational Control
Disturbance Rejection
author_facet R. Schlanbusch
R. Kristiansen
author_sort R. Schlanbusch
title Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
title_short Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
title_full Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
title_fullStr Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
title_full_unstemmed Control of Spacecraft Formation with Disturbance Rejection and Exponential Gains
title_sort control of spacecraft formation with disturbance rejection and exponential gains
publisher Norwegian Society of Automatic Control
series Modeling, Identification and Control
issn 0332-7353
1890-1328
publishDate 2013-01-01
description We address the problem of state feedback translational motion control of a spacecraft formation through a modified sliding surface controller using variable gains and I^2 action for disturbance rejection. The exponential varying gains ensure faster convergence of the state trajectories during attitude maneuver while keeping the gains small (and the system less stiff) for station keeping. Integral action is introduced for rejection of disturbances with a constant nonzero mean such as aerodynamic drag. A direct consequence is a drop in energy consumption when affected by sensor noise and a decrease in size of the error states residual when operating close to the equilibrium point. A large number of simulation results are presented to show the control performance.
topic Spacecraft Formation
Translational Control
Disturbance Rejection
url http://www.mic-journal.no/PDF/2013/MIC-2013-1-2.pdf
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