This contribution deals with fast Earth-Moon transfers with ballistic capture in the patched three-body model. We compute ensembles of preliminary solutions using a model that takes into account the relative inclination of the orbital planes of the primaries. The ballistic capture orbits around the Moon are obtained relying on the hyperbolic invariant structures associated to the collinear Lagrangian points of the Earth-Moon system, and the Sun-Earth system portion of the transfers are quasiperiodic orbits obtained by a genetic algorithm. The trajectories are designed to be good initial guesses to search optimal cost-efficient short-time Earth-Moon transfers with ballistic capture in more realistic models
This study analyzes a recently discovered class of exterior transfers to the Moon. These transfers t...
This paper focuses on the capture of Near-Earth Asteroids (NEAs) in a neighbourhood of the $\mathrm{...
This study analyzes a recently discovered new class of exterior transfers to the Moon under the pers...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
textThe successful completion of the Hiten mission in 1991 provided real-world validation of a class...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
In this paper novel Earth–Mars transfers are presented. These transfers exploit the natural dynamics...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
In this paper novel Earth-Mars transfers are presented. These transfers exploit the natural dynamics...
Distant retrograde orbits (DROs) are a neutrally stable class of three-body orbits. Because of their...
In 1991, the Japanese Hiten mission used a low energy transfer with a ballistic capture at the Moon...
Many interplanetary missions massively leverage the lunar gravitational pull in the so-called low-en...
This study analyzes a recently discovered class of exterior transfers to the Moon. These transfers t...
This paper focuses on the capture of Near-Earth Asteroids (NEAs) in a neighbourhood of the $\mathrm{...
This study analyzes a recently discovered new class of exterior transfers to the Moon under the pers...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
textThe successful completion of the Hiten mission in 1991 provided real-world validation of a class...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
In this paper novel Earth–Mars transfers are presented. These transfers exploit the natural dynamics...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
In this paper novel Earth-Mars transfers are presented. These transfers exploit the natural dynamics...
Distant retrograde orbits (DROs) are a neutrally stable class of three-body orbits. Because of their...
In 1991, the Japanese Hiten mission used a low energy transfer with a ballistic capture at the Moon...
Many interplanetary missions massively leverage the lunar gravitational pull in the so-called low-en...
This study analyzes a recently discovered class of exterior transfers to the Moon. These transfers t...
This paper focuses on the capture of Near-Earth Asteroids (NEAs) in a neighbourhood of the $\mathrm{...
This study analyzes a recently discovered new class of exterior transfers to the Moon under the pers...