Precise relative positioning by GPS is attempted traditionally by fixing the differential carrier phase cycle ambiguities to their integer values. This approach is of high interest for formation flying satellites in low Earth orbit since it can potentially deliver relative positions with (sub-)centimeter accuracy, but at the same time complicates the navigation system hardware and software. As an alternative to the fixed solution, different processing approaches making use of float carrier phase ambiguities can be proposed. The most simple of these solutions is analyzed in the present study and it is formed by differencing the float ambiguity–absolute navigation solutions obtained with navigation filters running independently on board each ...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
Global navigation systems provide worldwide positioning, navigation and navigation services. However...
Abstract Precise relative positioning by GPS is attempted traditionally by fixing the differential c...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Precision relative navigation is an essential aspect of spacecraft formation flying missions, both f...
In recent years, differential carrier phase-based relative positioning (or “baseline determination”)...
For the Tandem-X and TerraSAR-X forma- tion to achieve its scientific goals, a rela- tive position...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Carrier phase based GNSS relative positioning is explored for formation flying spacecraft in highly ...
Formations of small satellites are becoming more and more important to many space applications, sinc...
Precise, long-range GPS kinematic positioning to centimetre accuracy requires the carrier phase ambi...
This paper deals with the real-time onboard accurate relative positioning by Carrier-phase Different...
This paper deals with the real-time onboard accurate relative positioning by Carrier-phase Different...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
Global navigation systems provide worldwide positioning, navigation and navigation services. However...
Abstract Precise relative positioning by GPS is attempted traditionally by fixing the differential c...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Precision relative navigation is an essential aspect of spacecraft formation flying missions, both f...
In recent years, differential carrier phase-based relative positioning (or “baseline determination”)...
For the Tandem-X and TerraSAR-X forma- tion to achieve its scientific goals, a rela- tive position...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Carrier phase based GNSS relative positioning is explored for formation flying spacecraft in highly ...
Formations of small satellites are becoming more and more important to many space applications, sinc...
Precise, long-range GPS kinematic positioning to centimetre accuracy requires the carrier phase ambi...
This paper deals with the real-time onboard accurate relative positioning by Carrier-phase Different...
This paper deals with the real-time onboard accurate relative positioning by Carrier-phase Different...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
Global navigation systems provide worldwide positioning, navigation and navigation services. However...