In this paper an algorithm is developed that combines the capabilities and advantages of several different astrodynamical models of increasing complexity. Splitting these models in a strict hierarchical order yields a clearer grasp on what is available. With the effort of developing a comprehensive model overhead, the equations for the spacecraft motion in simpler models can be readily obtained as particular cases. The proposed algorithm embeds the circular and elliptic restricted three-body problems, the four-body bicircular and concentric models, an averaged n-body model, and, at the top hierarchic ladder, the full ephemeris SPICE-based restricted n-body problem. The equations of motion are reduced to the assignment of 13 time-varying coe...
General properties of the three-body problem in a model of modified dynamics are investigated. It is...
The application of dynamical systems theory in astrodynamics has enabled mission designers to constr...
In this paper, a technique for the analysis and the design of low-energy interplanetary transfers, e...
In this paper an algorithm is developed that combines the capabilities and advantages of several dif...
In this paper an algorithm is developed that combines the capabilities and advantages of several dif...
Instead of the two-body problem commonly used in interplanetary trajectory design, also three bodies...
With renewed interest in space exploration, the question of designing efficient transfers between ce...
In this paper, an automatic algorithm for the correction of orbits in the real solar system model is...
Two fundamental problems of celestial mechanics are considered: the stellar or planetary three-body ...
Consider the design of transfer trajectories to the vicinity of the Sun-Earth collinear libration po...
In this paper, an automatic algorithm for the correction of orbits in the real solar system model is...
A new approach is proposed for the systematic detection and refinement of natural connections betwee...
Aquest ítem conté el treball original, defensat públicament el juliol de 2014, així com una versió m...
Trajectory design increasingly leverages multi-body dynamical structures that are based on an unders...
General properties of the three-body problem in a model of modified dynamics are investigated. It is...
The application of dynamical systems theory in astrodynamics has enabled mission designers to constr...
In this paper, a technique for the analysis and the design of low-energy interplanetary transfers, e...
In this paper an algorithm is developed that combines the capabilities and advantages of several dif...
In this paper an algorithm is developed that combines the capabilities and advantages of several dif...
Instead of the two-body problem commonly used in interplanetary trajectory design, also three bodies...
With renewed interest in space exploration, the question of designing efficient transfers between ce...
In this paper, an automatic algorithm for the correction of orbits in the real solar system model is...
Two fundamental problems of celestial mechanics are considered: the stellar or planetary three-body ...
Consider the design of transfer trajectories to the vicinity of the Sun-Earth collinear libration po...
In this paper, an automatic algorithm for the correction of orbits in the real solar system model is...
A new approach is proposed for the systematic detection and refinement of natural connections betwee...
Aquest ítem conté el treball original, defensat públicament el juliol de 2014, així com una versió m...
Trajectory design increasingly leverages multi-body dynamical structures that are based on an unders...
General properties of the three-body problem in a model of modified dynamics are investigated. It is...
The application of dynamical systems theory in astrodynamics has enabled mission designers to constr...
In this paper, a technique for the analysis and the design of low-energy interplanetary transfers, e...