A great deal of attention has been paid to navigation during the close approach (less than or equal to 1 km) phase of spacecraft rendezvous. However, most spacecraft also require a navigation system which provides the necessary accuracy for placing both satellites within the range of the docking sensors. The Microcosm Autonomous Navigation System (MANS) is an on-board system which uses Earth-referenced attitude sensing hardware to provide precision orbit and attitude determination. The system is capable of functioning from LEO to GEO and beyond. Performance depends on the number of available sensors as well as mission geometry; however, extensive simulations have shown that MANS will provide 100 m to 400 m (3(sigma)) position accuracy and 0...
A rendezvous sensor system concept was developed for the cargo transfer vehicle (CTV) to autonomousl...
NASA Marshall Space Flight Center (MSFC) has developed and tested an engineering model of an automat...
Spacecraft navigation is a critical component of any space mission. Space navigation uses on-board s...
Technology for manned space flight is mature and has an extensive history of the use of man-in-the-l...
The briefing describes work using the Global Positioning System to determine position of spacecraft ...
The On-Orbit Autonomous Assembly from Nanosatellites (OAAN) project will demonstrate autonomous cont...
A realistic rendezvous and docking navigation solution applicable to CubeSats is investigated. The s...
As the number of spacecraft in simultaneous operation continues to grow, there is an increased depen...
Autonomy is needed for future spacecraft to solve the problems of human operator overload and transm...
An autonomous navigation system is considered that provides a satellite with sufficient numbers and ...
This study develops an integrated guidance, navigation and control system for use in autonomous prox...
The proposed technology studies discussed at the Space Transportation Avionics Symposium in Williams...
The future of the global economy lies in space. As the economic and scientific benefits from space b...
The guidance and navigation requirements for unmanned missions to the outer planets, assuming consta...
Is it possible to dock CubeSats in Low Earth Orbit? The challenges are mainly associated with the le...
A rendezvous sensor system concept was developed for the cargo transfer vehicle (CTV) to autonomousl...
NASA Marshall Space Flight Center (MSFC) has developed and tested an engineering model of an automat...
Spacecraft navigation is a critical component of any space mission. Space navigation uses on-board s...
Technology for manned space flight is mature and has an extensive history of the use of man-in-the-l...
The briefing describes work using the Global Positioning System to determine position of spacecraft ...
The On-Orbit Autonomous Assembly from Nanosatellites (OAAN) project will demonstrate autonomous cont...
A realistic rendezvous and docking navigation solution applicable to CubeSats is investigated. The s...
As the number of spacecraft in simultaneous operation continues to grow, there is an increased depen...
Autonomy is needed for future spacecraft to solve the problems of human operator overload and transm...
An autonomous navigation system is considered that provides a satellite with sufficient numbers and ...
This study develops an integrated guidance, navigation and control system for use in autonomous prox...
The proposed technology studies discussed at the Space Transportation Avionics Symposium in Williams...
The future of the global economy lies in space. As the economic and scientific benefits from space b...
The guidance and navigation requirements for unmanned missions to the outer planets, assuming consta...
Is it possible to dock CubeSats in Low Earth Orbit? The challenges are mainly associated with the le...
A rendezvous sensor system concept was developed for the cargo transfer vehicle (CTV) to autonomousl...
NASA Marshall Space Flight Center (MSFC) has developed and tested an engineering model of an automat...
Spacecraft navigation is a critical component of any space mission. Space navigation uses on-board s...