Future geostationary radar systems will require the satellite orbit modeling with precisions in the order of the radar wavelength. Using interferometric techniques it is possible to determine satellite angular observables along time which can be used for precise orbit determination. The development of a first compact interferometer has been proposed as a proof of concept.En el futuro, los radares geostacionarios requeriran de un modelage orbital conuna precisión en el orden de la longitud de onda usada. Utilitzando tècnicas interferométriques podemos obtener observables orbitales de alta precisión que pueden ser usados para determinación orbital. Este proyecto sirve como a demostración experimental de este concepto.En el futur, els radars g...
The aim of Geostationary Synthetic Aperture Radar (GeoSAR) missions is to obtain daily images of eve...
This project proposes and evaluates a solution to address the existing problem of time synchronizati...
An interferometer for orbital determination receives a satellite signal at different spatial points ...
Geostationary Synthetic Aperture Radars require a precise orbit modelling to obtain high resolutions...
This project addresses the characterization of an interferometer used for satellite orbit determinat...
This project addresses the characterization of an interferometer used for satellite orbit determinat...
Future Geosynchronous Synthetic Aperture Radar (GEOSAR) missions will provide permanent monitoring o...
Geostationary Synthetic Aperture Radars require a precise orbit modelling to obtain high resolutions...
Future Geosynchronous Synthetic Aperture Radar (GEOSAR) missions will provide permanent monitoring o...
The orbit accuracy requirements for a Geosynchronous Synthetic Aperture Radar (GEOSAR) are studied. ...
The final publication is available at link.springer.com via http://dx.doi.org/10.1007/s11432-016-905...
A major limitation of current Low Earth Orbit Synthetic Aperture Radars (LEOSAR) is related to their...
The advent of geosynchronous remote sensing missions requires the development of precise orbit deter...
The final publication is available at link.springer.com via http://dx.doi.org/10.1007/s11432-016-905...
The aim of Geostationary Synthetic Aperture Radar (GeoSAR) missions is to obtain daily images of eve...
The aim of Geostationary Synthetic Aperture Radar (GeoSAR) missions is to obtain daily images of eve...
This project proposes and evaluates a solution to address the existing problem of time synchronizati...
An interferometer for orbital determination receives a satellite signal at different spatial points ...
Geostationary Synthetic Aperture Radars require a precise orbit modelling to obtain high resolutions...
This project addresses the characterization of an interferometer used for satellite orbit determinat...
This project addresses the characterization of an interferometer used for satellite orbit determinat...
Future Geosynchronous Synthetic Aperture Radar (GEOSAR) missions will provide permanent monitoring o...
Geostationary Synthetic Aperture Radars require a precise orbit modelling to obtain high resolutions...
Future Geosynchronous Synthetic Aperture Radar (GEOSAR) missions will provide permanent monitoring o...
The orbit accuracy requirements for a Geosynchronous Synthetic Aperture Radar (GEOSAR) are studied. ...
The final publication is available at link.springer.com via http://dx.doi.org/10.1007/s11432-016-905...
A major limitation of current Low Earth Orbit Synthetic Aperture Radars (LEOSAR) is related to their...
The advent of geosynchronous remote sensing missions requires the development of precise orbit deter...
The final publication is available at link.springer.com via http://dx.doi.org/10.1007/s11432-016-905...
The aim of Geostationary Synthetic Aperture Radar (GeoSAR) missions is to obtain daily images of eve...
The aim of Geostationary Synthetic Aperture Radar (GeoSAR) missions is to obtain daily images of eve...
This project proposes and evaluates a solution to address the existing problem of time synchronizati...
An interferometer for orbital determination receives a satellite signal at different spatial points ...