This paper proposes a real-time implementable Lyapunov-based guidance algorithm for small-body proximity operations. The guidance solution accounts for the secular effects coming from the oblateness of the main body and for the non-impact condition between the latter one and the spacecraft. The first perturbation with respect to the two-body problem is implemented via an update of the Keplerian elements based on the secular precessing ellipse model, while the second one through a check on the radial distance at periapsis. Advantages are taken of the fact that real-time guidance algorithms require only the knowledge of the current state of the spacecraft and of the target. The proposed mission scenario implements an approximate model of 433 ...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
The largest threat for asteroids impacts on Earth is currently posed by small bodies of diameter les...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
In this paper, we discuss non-linear methodologies that can be employed to devise real-time algorith...
In this paper, we discuss non-linear methodologies that can be employed to devise real-time algorith...
Maintaining missions in proximity of small bodies involves extensive orbit determination and ground ...
Maintaining missions in proximity of small bodies involves extensive orbit determination and ground ...
Airbus Defence and Space GmbH in Friedrichshafen is the project coordinator of the NEOShield-2 proje...
The guidance and control algorithms for enabling spacecraft proximity operations about small celesti...
A near-optimal feedback guidance algorithm is applied to several different applications in the Circu...
International audienceSampling Based Motion Planning (SBMP) techniques are widely used in robotics t...
International audienceSampling Based Motion Planning (SBMP) techniques are widely used in robotics t...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
The largest threat for asteroids impacts on Earth is currently posed by small bodies of diameter les...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
In this paper, we discuss non-linear methodologies that can be employed to devise real-time algorith...
In this paper, we discuss non-linear methodologies that can be employed to devise real-time algorith...
Maintaining missions in proximity of small bodies involves extensive orbit determination and ground ...
Maintaining missions in proximity of small bodies involves extensive orbit determination and ground ...
Airbus Defence and Space GmbH in Friedrichshafen is the project coordinator of the NEOShield-2 proje...
The guidance and control algorithms for enabling spacecraft proximity operations about small celesti...
A near-optimal feedback guidance algorithm is applied to several different applications in the Circu...
International audienceSampling Based Motion Planning (SBMP) techniques are widely used in robotics t...
International audienceSampling Based Motion Planning (SBMP) techniques are widely used in robotics t...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...
The largest threat for asteroids impacts on Earth is currently posed by small bodies of diameter les...
An adaptive guidance algorithm for close approach to and precision landing on uncooperative low-grav...