Intermoon transfers are important components of planetary tour missions. However, these transfers are challenging to design due in part to the chaotic, hostile environment created by the multi-body dynamics. The specific objective of this work is to develop a systematic methodology to find fuel optimal, near ballistic Halo-to-Halo trajectories between planetary moons, and we achieve this goal by combining dynamical systems theory with a variety of non-linear programming techniques. The spacecraft is constrained to start at Halo orbit of a moon and end at another Halo orbit of a second moon. Our approach overcomes the obstacles of the chaotic dynamics by combining multiple ‘resonant-hopping’ gravity assists with manifolds that control the lo...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...
There has recently been considerable interest in sending a spacecraft to orbit Europa, the smallest ...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...
In response to the scientific interest in Jupiter’s moons, NASA and ESA have recently decided to tar...
This contribution presents an efficient method to compute direct transfers between Halo orbits from ...
This contribution presents an efficient method to compute direct transfers between Halo orbits from ...
A key trade-off for planetary system exploration is the fuel cost required versus science data obtai...
A key trade-off for planetary system exploration is the fuel cost required versus science data obtai...
Increasing interest in planetary moons such as Europa calls for capturing into low-altitude science ...
Abstract: Trajectories connecting LEOs with halos around libration points of the Earth– Moon CRTBP a...
For low energy spacecraft trajectories such as multi-moon orbiters for the Jupiter system, multiple ...
Distant retrograde orbits (DROs) are a neutrally stable class of three-body orbits. Because of their...
This study demonstrates how to use dynamical systemsmethods to construct families of low-energy ball...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...
There has recently been considerable interest in sending a spacecraft to orbit Europa, the smallest ...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...
In response to the scientific interest in Jupiter’s moons, NASA and ESA have recently decided to tar...
This contribution presents an efficient method to compute direct transfers between Halo orbits from ...
This contribution presents an efficient method to compute direct transfers between Halo orbits from ...
A key trade-off for planetary system exploration is the fuel cost required versus science data obtai...
A key trade-off for planetary system exploration is the fuel cost required versus science data obtai...
Increasing interest in planetary moons such as Europa calls for capturing into low-altitude science ...
Abstract: Trajectories connecting LEOs with halos around libration points of the Earth– Moon CRTBP a...
For low energy spacecraft trajectories such as multi-moon orbiters for the Jupiter system, multiple ...
Distant retrograde orbits (DROs) are a neutrally stable class of three-body orbits. Because of their...
This study demonstrates how to use dynamical systemsmethods to construct families of low-energy ball...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
This paper presents two ways to transfer a spacecraft to distant periodic orbits in the Earth–Moon s...
There has recently been considerable interest in sending a spacecraft to orbit Europa, the smallest ...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...