Optimal impulsive control in a powered Swing-By

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Data

2013-09-16

Autores

Silva, Alessandra F.
Prado, Antonio F. B. A.
Winter, Othon C. [UNESP]

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Resumo

This paper studies the problem of applying an impulsive control in a spacecraft that is performing a Swing-By maneuver. The objective is to study the changes in velocity, energy and angular momentum for this maneuver as a function of the three usual parameters of the standard Swing-By plus the three parameters (the magnitude of the impulse, the point of its application and the angle between the impulse and the velocity of the spacecraft) that specify the impulse applied. The dynamics used is the restricted three body problem under the regularization of Lemaitre, made to increase the accuracy of the numerical integration near the primaries. The present research develops an algorithm to calculate the variation of energy and angular momentum in a maneuver where the application of the impulsive control occurs before or after the passage of the spacecraft by the periapsis, but within the sphere of influence of the secondary body and in a non-tangential direction. Using this approach, it is possible to find the best position and direction to apply the impulse to maximize the energy change of the total maneuver. The results showed that the application of the impulse at the periapsis and in the direction of motion of the spacecraft is usually not the optimal solution.

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Palavras-chave

Direction of motion, Impulsive controls, ITS applications, Numerical integrations, Optimal impulsive control, Optimal solutions, Restricted three body problem, Sphere of influences, Angular momentum, Spacecraft

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AIAA Guidance, Navigation, and Control (GNC) Conference.