Recent advancements in CubeSat technology unfold new mission ideas and the opportunity to lower the cost of space exploration. Ground operations costs for interplanetary CubeSats, however, still represent a challenge toward low-cost CubeSat missions: hence, certain levels of autonomy are desirable. The feasibility of autonomous asteroid flyby missions using CubeSats is assessed here, and an effective strategy for autonomous operations is proposed. The navigation strategy is composed of observations of the Sun, visible planets, and the target asteroid, whereas the guidance strategy is composed of two optimally timed trajectory correction maneuvers. A Monte Carlo analysis is performed to understand the flyby accuracies that can be achieved by...
There is considerable interest in expanding the applicability of cubesat spacecraft into lightweight...
The Miniaturised Asteroid Remote Geophysical Observer (M-ARGO) is planned to be the first standalone...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Recent advancements in CubeSat technology unfold new mission ideas and the possibility to lower the ...
CubeSat technology has recently attracted great interest from the scientific community, industry and...
In response to the current interest in CubeSats and potential applications for planetary exploration...
Fast development of CubeSat technology now enables the first interplanetary missions. The potential ...
In this paper, a practical approach to the trajectory design for asteroid exploration missions with ...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Nanosatellite missions represent a promising option for the exploration of the near-Earth asteroid p...
In this paper, a practical approach to trajectory design for asteroid exploration missions with Cube...
Small body exploration has seen a renewed interest in recent years. Landing a spacecraft on the body...
As SmallSats are gathering an ever-increasing importance for all types of space missions, they are a...
Missions to Near-Earth Objects (NEOs) are a growing trend in spaceflight. The interest for such bodi...
There is considerable interest in expanding the applicability of cubesat spacecraft into lightweight...
The Miniaturised Asteroid Remote Geophysical Observer (M-ARGO) is planned to be the first standalone...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Recent advancements in CubeSat technology unfold new mission ideas and the possibility to lower the ...
CubeSat technology has recently attracted great interest from the scientific community, industry and...
In response to the current interest in CubeSats and potential applications for planetary exploration...
Fast development of CubeSat technology now enables the first interplanetary missions. The potential ...
In this paper, a practical approach to the trajectory design for asteroid exploration missions with ...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Nanosatellite missions represent a promising option for the exploration of the near-Earth asteroid p...
In this paper, a practical approach to trajectory design for asteroid exploration missions with Cube...
Small body exploration has seen a renewed interest in recent years. Landing a spacecraft on the body...
As SmallSats are gathering an ever-increasing importance for all types of space missions, they are a...
Missions to Near-Earth Objects (NEOs) are a growing trend in spaceflight. The interest for such bodi...
There is considerable interest in expanding the applicability of cubesat spacecraft into lightweight...
The Miniaturised Asteroid Remote Geophysical Observer (M-ARGO) is planned to be the first standalone...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...