Future space telescopes with diameter over 20 m will require new approaches: either high-precision formation flying or in-orbit assembly. We believe the latter holds promise as a potentially lower cost and more practical solution in the near term, provided much of the assembly can be carried out autonomously. To gain experience, and to provide risk reduction, we propose a combined mico/nano-satellite demonstration mission that will focus on the required optical technology (adaptive mirrors, phase-sensitive detectors) and autonomous rendezvous and docking technology (inter-satellite links, relative position sensing, automated docking mechanisms). The mission will involve two "3U" Cubesat-like nanosatellites ("MirrorSats") each carrying an el...
The goal of the research program is to develop a prototype of a satellite constellation consisting o...
Demand for more complex space systems is ever increasing as the scale of the future missions expands...
Small spacecraft autonomous rendezvous and docking is an essential technology for future space struc...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require in-space assembly. High-precision forma...
Future space telescopes with diameter over 20 m will require in-space assembly. High-precision forma...
In recent years, there has been a desire to develop space-based optical telescopes with large primar...
Surrey Satellite Technology Ltd and the University of Surrey have a long history of demonstrating ne...
The size of any single spacecraft is ultimately limited by the volume and mass constraints of curren...
Nanosatellites, i.e. spacecraft that weigh between 1 and 10 kg, are drawing increasing interest as p...
Active and adaptive wavefront control can be useful on space platforms for a variety of observation ...
In many types of space mission there is a constant desire for larger and larger instrument apertures...
The Deformable Mirror Demonstration Mission (DeMi) is a technology demonstration CubeSat to test a 1...
The goal of the research program is to develop a prototype of a satellite constellation consisting o...
Demand for more complex space systems is ever increasing as the scale of the future missions expands...
Small spacecraft autonomous rendezvous and docking is an essential technology for future space struc...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require new approaches: either high-precision f...
Future space telescopes with diameter over 20 m will require in-space assembly. High-precision forma...
Future space telescopes with diameter over 20 m will require in-space assembly. High-precision forma...
In recent years, there has been a desire to develop space-based optical telescopes with large primar...
Surrey Satellite Technology Ltd and the University of Surrey have a long history of demonstrating ne...
The size of any single spacecraft is ultimately limited by the volume and mass constraints of curren...
Nanosatellites, i.e. spacecraft that weigh between 1 and 10 kg, are drawing increasing interest as p...
Active and adaptive wavefront control can be useful on space platforms for a variety of observation ...
In many types of space mission there is a constant desire for larger and larger instrument apertures...
The Deformable Mirror Demonstration Mission (DeMi) is a technology demonstration CubeSat to test a 1...
The goal of the research program is to develop a prototype of a satellite constellation consisting o...
Demand for more complex space systems is ever increasing as the scale of the future missions expands...
Small spacecraft autonomous rendezvous and docking is an essential technology for future space struc...