Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites

This paper considers the problem of out of plane orbital maneuvers for station keeping of satellites. The main idea is to consider that a satellite is in an orbit around the Earth and that it has its orbit is disturbed by one or more forces. Then, it is necessary to perform a small amplitude orbital...

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Main Authors: Vivian M. Gomes, Antonio F. B. A. Prado
Format: Article
Language:English
Published: Hindawi Limited 2012-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2012/532708
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spelling doaj-8115b67cac234ab9b500b83a0117fdd92020-11-24T22:56:51ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472012-01-01201210.1155/2012/532708532708Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for SatellitesVivian M. Gomes0Antonio F. B. A. Prado1DMC, National Institute for Space Research (INPE), Avenida dos Astronautas 1758, 12227-010 São José dos Campos, SP, BrazilDMC, National Institute for Space Research (INPE), Avenida dos Astronautas 1758, 12227-010 São José dos Campos, SP, BrazilThis paper considers the problem of out of plane orbital maneuvers for station keeping of satellites. The main idea is to consider that a satellite is in an orbit around the Earth and that it has its orbit is disturbed by one or more forces. Then, it is necessary to perform a small amplitude orbital correction to return the satellite to its original orbit, to keep it performing its mission. A low thrust propulsion is used to complete this task. It is important to search for solutions that minimize the fuel consumption to increase the lifetime of the satellite. To solve this problem a hybrid optimal control approach is used. The accuracy of the satisfaction of the constraints is considered, in order to try to decrease the fuel expenditure by taking advantage of this freedom. This type of problem presents numerical difficulties and it is necessary to adjust parameters, as well as details of the algorithm, to get convergence. In this versions of the algorithm that works well for planar maneuvers are usually not adequate for the out of plane orbital corrections. In order to illustrate the method, some numerical results are presented.http://dx.doi.org/10.1155/2012/532708
collection DOAJ
language English
format Article
sources DOAJ
author Vivian M. Gomes
Antonio F. B. A. Prado
spellingShingle Vivian M. Gomes
Antonio F. B. A. Prado
Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
Mathematical Problems in Engineering
author_facet Vivian M. Gomes
Antonio F. B. A. Prado
author_sort Vivian M. Gomes
title Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
title_short Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
title_full Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
title_fullStr Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
title_full_unstemmed Low-Thrust Out-of-Plane Orbital Station-Keeping Maneuvers for Satellites
title_sort low-thrust out-of-plane orbital station-keeping maneuvers for satellites
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2012-01-01
description This paper considers the problem of out of plane orbital maneuvers for station keeping of satellites. The main idea is to consider that a satellite is in an orbit around the Earth and that it has its orbit is disturbed by one or more forces. Then, it is necessary to perform a small amplitude orbital correction to return the satellite to its original orbit, to keep it performing its mission. A low thrust propulsion is used to complete this task. It is important to search for solutions that minimize the fuel consumption to increase the lifetime of the satellite. To solve this problem a hybrid optimal control approach is used. The accuracy of the satisfaction of the constraints is considered, in order to try to decrease the fuel expenditure by taking advantage of this freedom. This type of problem presents numerical difficulties and it is necessary to adjust parameters, as well as details of the algorithm, to get convergence. In this versions of the algorithm that works well for planar maneuvers are usually not adequate for the out of plane orbital corrections. In order to illustrate the method, some numerical results are presented.
url http://dx.doi.org/10.1155/2012/532708
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AT antoniofbaprado lowthrustoutofplaneorbitalstationkeepingmaneuversforsatellites
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