Contingent upon the modification of an initial condition of the injected or deployed orbit. Additionally, these designs can be restricted by the selection of the Cubesat subsystem design such as propulsion or communication. Nonetheless, many trajectory options can be designed with have a wide range of transfer durations, fuel requirements, and final destinations. Our investigation of potential trajectories highlights several design options including deployment into low Earth orbit (LEO), geostationary transfer orbits (GTO), and higher energy direct lunar transfer orbits. In addition to direct transfer options from these initial orbits, we also investigate the use of longer duration Earth-Moon dynamical systems. For missions with an intended...
Due to the advances in miniaturization, CubeSats are becoming more versatile, with projected mission...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
A subset of the presently-defined NASA robotic lunar exploration objectives may be achievable with a...
Numerous Earth-Moon trajectory and lunar orbit options are available for Cubesat missions. Given the...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
Spacecraft which utilize electric propulsion (EP) systems are capable of delivering a greater payloa...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
We have evaluated the application of the CubeSat Paradigm for deep space exploration, often referred...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
Proceeding of: 35th International Electric Propulsion Conference (IEPC), October 8-12, 2017, Atlanta...
Secondary payloads have a rich and successful history of utilizing cheap rides to orbit to perform o...
Due to the advances in miniaturization, CubeSats are becoming more versatile, with projected mission...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
A subset of the presently-defined NASA robotic lunar exploration objectives may be achievable with a...
Numerous Earth-Moon trajectory and lunar orbit options are available for Cubesat missions. Given the...
Lunar IceCube, a 6U CubeSat, will prospect for water and other volatiles from a low-periapsis, highl...
The challenges of targeting specific lunar science orbit parameters from a concomitant Sun-Earth/Moo...
Lunar IceCube is a 6U CubeSat that is designed to detect and observe lunar volatiles from a highly i...
Spacecraft which utilize electric propulsion (EP) systems are capable of delivering a greater payloa...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
As cislunar and outer space exploration regains worldwide popularity, the low-thrust spacecraft tech...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
We have evaluated the application of the CubeSat Paradigm for deep space exploration, often referred...
The problem of finding optimal trajectories is essential for modern space mission design. When consi...
Proceeding of: 35th International Electric Propulsion Conference (IEPC), October 8-12, 2017, Atlanta...
Secondary payloads have a rich and successful history of utilizing cheap rides to orbit to perform o...
Due to the advances in miniaturization, CubeSats are becoming more versatile, with projected mission...
Spacecraft trajectory design is evolving and innovation is increasingly driven by computational meth...
A subset of the presently-defined NASA robotic lunar exploration objectives may be achievable with a...