Amb motiu del tancament d'estiu, la validació de documents es reprendrà a partir del 28 d'agost de 2026. Disculpeu les molèsties.
Con motivo del cierre de verano, la validación de documentos se reanudará a partir del 28 de agosto de 2026. Disculpad las molestias
Due to the summer closure, document validation will resume starting August 28, 2026. We apologize for any inconvenience.

Document type

Article

Version

Submitted version

Publication date

Publication license

cc-by-nc-nd (c) COSPAR, 2015
Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/165979

Zero drift regions and control strategies to keep satellite in formation around triangular libration point in the restricted Sun Earth Moon scenario

Journal Title

Director/Tutor

Journal ISSN

Volume Title

Abstract

In this work, we are interested in avoiding large variations in the mutual distances among multiple satellites and also in controlling their geometric configuration around an Earth-Moon triangular point. Previous studies about triangular libration points have determined the existence of zero drift regions with respect to the nominal trajectory, in which the expansion or contraction of the formation never take place. Our goal is to carry out two different control strategies for a formation near a given nominal trajectory around : a bang-off-bang control and a minimum weighted total consumption. A linearization relative to the reference trajectory around the triangular libration point is carried out, and different geometrical possibilities in the zero drift regions are studied. To investigate the influence of the gravitational force of the Sun, the BiCircular Four Body Problem is considered here. According to the results obtained, some meaningful insights to allow a proper design of the geometric configuration of the formation are drawn.

Citation

Citation

SALAZAR, Francisco Javier T., et al. Zero drift regions and control strategies to keep satellite in formation around triangular libration point in the restricted Sun Earth Moon scenario. Advances in Space Research. 2015. Vol. 56, num. 7, pags. 1502-1518. ISSN 0273-1177. [consulted: 11 of August of 2026]. Available at: https://hdl.handle.net/2445/165979

Export metadata

JSON - METS

Share record