This paper describes a carrier-phase differential GPS approach for real-time relative navigation of LEO satellites flying in formation with large separations. These applications are characterized indeed by a highly varying number of GPS satellites in common view and large ionospheric differential errors, which significantly impact relative navigation performance and robustness. To achieve high relative positioning accuracy a navigation algorithm is proposed which processes double-difference code and carrier measurements on two frequencies, to fully exploit the integer nature of the related ambiguities. Specifically, a closed-loop scheme is proposed in which fixed estimates of the baseline and integer ambiguities produced by means of a parti...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
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 ...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
This paper focuses on the autonomous real-time relative navigation of LEO satellite formations. Spec...
This paper deals with the GPS-based relative navigation of LEO formations. Specifically, we consider...
Relative navigation system is presented using GPS measurements from a single-channel global position...
A basic requirement for a satellite's formation is the precise knowledge of the spacecraft's relativ...
This paper addresses the problem of determining the baseline of formation flying satellites using ca...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
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 ...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
This paper focuses on the autonomous real-time relative navigation of LEO satellite formations. Spec...
This paper deals with the GPS-based relative navigation of LEO formations. Specifically, we consider...
Relative navigation system is presented using GPS measurements from a single-channel global position...
A basic requirement for a satellite's formation is the precise knowledge of the spacecraft's relativ...
This paper addresses the problem of determining the baseline of formation flying satellites using ca...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
This paper presents and approach for real-time onboard relative positioning of two spacecraft separa...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
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...