The upcoming Lunar IceCube (LIC) mission will deliver a 6U CubeSat to a low lunar orbit via a ride-share opportunity during NASAs Artemis 1 mission. This presents a challenging trajectory design scenario, as the vast change in energy required to transfer from the initial deployment state to the destination orbit is compounded by the limitations of the LICs low-thrust engine. This investigation addresses these challenges by developing a trajectory design framework that utilizes dynamical structures available in the Bicircular Restricted Four-Body Problem (BCR4BP) along with a robust direct collocation algorithm. Maps are created that expedite the selection of invariant manifold paths from a periodic staging orbit in the BCR4BP that offer fav...
The objective of this work is the development of efficient techniques for the preliminary design of ...
Multi-body systems have become the target of an increasing number of mission concepts and observatio...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
textSpacecraft trajectory optimization is a topic of crucial importance to space missions design. Th...
A framework for designing and optimizing low-thrust trajectories for lunar south pole coverage missi...
Contingent upon the modification of an initial condition of the injected or deployed orbit. Addition...
This paper presents the trajectory design for EQUilibriUm Lunar-Earth point 6U Spacecraft (EQUULEUS)...
Consider the design of transfer trajectories to the vicinity of the Sun-Earth collinear libration po...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
A key challenge in low-thrust trajectory design is generating preliminary solutions that simultaneou...
Mission design requires the efficient management of spacecraft fuel to reduce mission cost, increase...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
The objective of this work is the development of efficient techniques for the preliminary design of ...
Multi-body systems have become the target of an increasing number of mission concepts and observatio...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
textSpacecraft trajectory optimization is a topic of crucial importance to space missions design. Th...
A framework for designing and optimizing low-thrust trajectories for lunar south pole coverage missi...
Contingent upon the modification of an initial condition of the injected or deployed orbit. Addition...
This paper presents the trajectory design for EQUilibriUm Lunar-Earth point 6U Spacecraft (EQUULEUS)...
Consider the design of transfer trajectories to the vicinity of the Sun-Earth collinear libration po...
An increasing interest in lunar exploration calls for low-cost techniques of reaching the Moon. Ball...
A key challenge in low-thrust trajectory design is generating preliminary solutions that simultaneou...
Mission design requires the efficient management of spacecraft fuel to reduce mission cost, increase...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
The objective of this work is the development of efficient techniques for the preliminary design of ...
Multi-body systems have become the target of an increasing number of mission concepts and observatio...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...