The problem of finding optimal trajectories is essential for modern space mission design. When considering multibody gravitational dynamics and exploiting both low-thrust and high-thrust and alternative forms of propulsion such as solar sailing, sets of good initial guesses are fundamental for the convergence to local or global optimal solutions, using both direct or indirect methods available to solve the optimal control problem. This paper deals with obtaining preliminary trajectories that are designed to be good initial guesses as input to search optimal low-energy short-time Earth-Moon transfers with ballistic capture. A more realistic modelling is introduced, in which the restricted four-body system Sun-Earth-Moon-Spacecraft is d...
In 1991, the Japanese Hiten mission used a low energy transfer with a ballistic capture at the Moon...
A search for low Δ V Earth-to-Moon trajectories has been initiated. Numerical integration of the equ...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
This contribution deals with fast Earth-Moon transfers with ballistic capture in the patched three-b...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
textThe successful completion of the Hiten mission in 1991 provided real-world validation of a class...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
In this work we merge together the low-thrust propulsion and the invariant manifold technique to des...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
AbstractThe optimization of the Earth-moon trajectory using solar electric propulsion is presented. ...
For low energy spacecraft trajectories such as multi-moon orbiters for the Jupiter system, multiple ...
In 1991, the Japanese Hiten mission used a low energy transfer with a ballistic capture at the Moon...
A search for low Δ V Earth-to-Moon trajectories has been initiated. Numerical integration of the equ...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
This contribution deals with fast Earth-Moon transfers with ballistic capture in the patched three-b...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
textThe successful completion of the Hiten mission in 1991 provided real-world validation of a class...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
In this work we merge together the low-thrust propulsion and the invariant manifold technique to des...
Two-impulse trajectories as well as mixed invariant-manifold, low-thrust efficient transfers to the ...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
AbstractThe optimization of the Earth-moon trajectory using solar electric propulsion is presented. ...
For low energy spacecraft trajectories such as multi-moon orbiters for the Jupiter system, multiple ...
In 1991, the Japanese Hiten mission used a low energy transfer with a ballistic capture at the Moon...
A search for low Δ V Earth-to-Moon trajectories has been initiated. Numerical integration of the equ...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...