This paper presents the trajectory design for EQUilibriUm Lunar-Earth point 6U Spacecraft (EQUULEUS), which aims to demonstrate orbit control capability of CubeSats in the cislunar space. The mission plans to observe the far side of the Moon from an Earth-Moon L2 (EML2) libration point orbit. The EQUULEUS trajectory design needs to react to uncertainties of mission design parameters such as the launch conditions, errors, and thrust levels. The main challenge is to quickly design science orbits at EML2 and low-energy transfers from the post-deployment trajectory to the science orbits within the CubeSat’s limited propulsion capabilities. To overcome this challenge, we develop a systematic trajectory design approach that 1) designs over 13,000...
EQUULEUS (EQUilibriUm Lunar-Earth point 6U Spacecraft) will be the world’s smallest spacecraft to ex...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
A 6U Deep Space CubeSat EQUULEUS (EQUilibriUm Lunar-Earth point 6U Spacecraft) will be the world’s s...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
A renewed interest in the Moon over the last decade has created a need for robust mission design alg...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
Contingent upon the modification of an initial condition of the injected or deployed orbit. Addition...
EQUULEUS is a 6U CubeSat developed by the Japan Aerospace Exploration Agency (JAXA) and the Universi...
This paper deals with the design and optimization of transfer trajectories from the Earth to the Moo...
The European Student Moon Orbiter, currently at preliminary phase A, is the first lunar spacecraft e...
Within the context of manned spaceflight activities, Earth-Moon libration point orbits could support...
EQUULEUS (EQUilibriUm Lunar-Earth point 6U Spacecraft) will be the world’s smallest spacecraft to ex...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
A 6U Deep Space CubeSat EQUULEUS (EQUilibriUm Lunar-Earth point 6U Spacecraft) will be the world’s s...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
A renewed interest in the Moon over the last decade has created a need for robust mission design alg...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
Contingent upon the modification of an initial condition of the injected or deployed orbit. Addition...
EQUULEUS is a 6U CubeSat developed by the Japan Aerospace Exploration Agency (JAXA) and the Universi...
This paper deals with the design and optimization of transfer trajectories from the Earth to the Moo...
The European Student Moon Orbiter, currently at preliminary phase A, is the first lunar spacecraft e...
Within the context of manned spaceflight activities, Earth-Moon libration point orbits could support...
EQUULEUS (EQUilibriUm Lunar-Earth point 6U Spacecraft) will be the world’s smallest spacecraft to ex...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
A dynamical understanding of orbits in the Earth-Moon neighborhood that can sustain long-term activi...