Autonomous operations in the proximity of Near Earth Objects (NEO) are perhaps the most challenging and demanding type of mission operation currently being considered. The exceptional variability of geometric and illumination conditions, the scarcity of large scale surface features and the strong perturbations in their proximity require incredibly robust systems to be handled. Robustness is usually introduced by either increasing the number and/or the complexity of on-board sensors, or by employing algorithms capable of handling uncertainties, often computationally heavy. While for a large satellite this would be predominantly an economic issue, for small satellites these constraints might push the ability to accomplish challenging mission...
Remote sensing instrumentation onboard missions to asteroids is paramount to address many of the fun...
Binary asteroids are believed to constitute about 15% percent of the near-Earth asteroid (NEA) popul...
The deep-space nanosatellite is a growing trend that will need solutions for autonomous navigation. ...
Recent advancements in CubeSat technology unfold new mission ideas and the possibility to lower the ...
We present an autonomous visual landmark recognition and pose estimation algorithm designed for use ...
Recent advancements in CubeSat technology unfold new mission ideas and the opportunity to lower the ...
Asteroid surface science provides the necessary “ground-truth” to validate and enhance remote sensin...
In response to the current interest in CubeSats and potential applications for planetary exploration...
CubeSat technology has recently attracted great interest from the scientific community, industry and...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Fast development of CubeSat technology now enables the first interplanetary missions. The potential ...
In this paper, a practical approach to trajectory design for asteroid exploration missions with Cube...
Spacecraft landings on small bodies (asteroids and comets) can require target accuracies too stringe...
Spacecraft landings on small bodies (asteroids and comets) can require target accuracies too stringe...
International audienceFor a space rendezvous mission, autonomy im- poses stringent performance requi...
Remote sensing instrumentation onboard missions to asteroids is paramount to address many of the fun...
Binary asteroids are believed to constitute about 15% percent of the near-Earth asteroid (NEA) popul...
The deep-space nanosatellite is a growing trend that will need solutions for autonomous navigation. ...
Recent advancements in CubeSat technology unfold new mission ideas and the possibility to lower the ...
We present an autonomous visual landmark recognition and pose estimation algorithm designed for use ...
Recent advancements in CubeSat technology unfold new mission ideas and the opportunity to lower the ...
Asteroid surface science provides the necessary “ground-truth” to validate and enhance remote sensin...
In response to the current interest in CubeSats and potential applications for planetary exploration...
CubeSat technology has recently attracted great interest from the scientific community, industry and...
The purpose of this work is to present a novel CubeSat architecture, aimed to explore Near Earth Ast...
Fast development of CubeSat technology now enables the first interplanetary missions. The potential ...
In this paper, a practical approach to trajectory design for asteroid exploration missions with Cube...
Spacecraft landings on small bodies (asteroids and comets) can require target accuracies too stringe...
Spacecraft landings on small bodies (asteroids and comets) can require target accuracies too stringe...
International audienceFor a space rendezvous mission, autonomy im- poses stringent performance requi...
Remote sensing instrumentation onboard missions to asteroids is paramount to address many of the fun...
Binary asteroids are believed to constitute about 15% percent of the near-Earth asteroid (NEA) popul...
The deep-space nanosatellite is a growing trend that will need solutions for autonomous navigation. ...