An Optical Wide-field patroL-Network (OWL-Net) has been developed for maintaining Korean low Earth orbit (LEO) satellites’ orbital ephemeris. The OWL-Net consists of five optical tracking stations. Brightness signals of reflected sunlight of the targets were detected by a charged coupled device (CCD). A chopper system was adopted for fast astrometric data sampling, maximum 50 Hz, within a short observation time. The astrometric accuracy of the optical observation data was validated with precise orbital ephemeris such as Consolidated Prediction File (CPF) data and precise orbit determination result with onboard Global Positioning System (GPS) data from the target satellite. In the optical observation simulation of the OWL-Net for 2017,...
Due to the increasing threat of space debris to active satellites, space object catalogs must be bui...
An optical tracking system has advantages for observing geostationary earth orbit (GEO) satellites r...
The detector subsystem of the Optical Wide-field Patrol (OWL) network efficiently acquires the posit...
An Optical Wide-field patroL-Network (OWL-Net) has been developed for maintaining Korean low Earth o...
An optical tracking network, the Optical Wide-field patroL Network (OWL-Net), has been developed to ...
The optical wide-field patrol network (OWL-Net) is a Korean optical surveillance system that tracks ...
The Optical Wide-field patroL-Network (OWL-Net) is a global optical network for Space Situational Aw...
By using the Optical Wide-field Patrol (OWL) network developed by the Korea Astronomy and Space Scie...
We estimated the orbit of the Communication, Ocean and Meteorological Satellite (COMS), a Geostation...
Two-Line Elements (TLEs) of LEO objects, consisting in the object orbital parameters released by the...
To protect and manage the Korean space assets including satellites, it is important to have precise ...
An algorithm to automatically extract coordinate and time information from optical observation data ...
Inactive space objects are usually rotating and tumbling as a result of internal or external forces....
In many cases, we have few optical observations over a short time span, and most of the information ...
Space Surveillance and Tracking (SST) is an increasingly necessary field of research due to the expo...
Due to the increasing threat of space debris to active satellites, space object catalogs must be bui...
An optical tracking system has advantages for observing geostationary earth orbit (GEO) satellites r...
The detector subsystem of the Optical Wide-field Patrol (OWL) network efficiently acquires the posit...
An Optical Wide-field patroL-Network (OWL-Net) has been developed for maintaining Korean low Earth o...
An optical tracking network, the Optical Wide-field patroL Network (OWL-Net), has been developed to ...
The optical wide-field patrol network (OWL-Net) is a Korean optical surveillance system that tracks ...
The Optical Wide-field patroL-Network (OWL-Net) is a global optical network for Space Situational Aw...
By using the Optical Wide-field Patrol (OWL) network developed by the Korea Astronomy and Space Scie...
We estimated the orbit of the Communication, Ocean and Meteorological Satellite (COMS), a Geostation...
Two-Line Elements (TLEs) of LEO objects, consisting in the object orbital parameters released by the...
To protect and manage the Korean space assets including satellites, it is important to have precise ...
An algorithm to automatically extract coordinate and time information from optical observation data ...
Inactive space objects are usually rotating and tumbling as a result of internal or external forces....
In many cases, we have few optical observations over a short time span, and most of the information ...
Space Surveillance and Tracking (SST) is an increasingly necessary field of research due to the expo...
Due to the increasing threat of space debris to active satellites, space object catalogs must be bui...
An optical tracking system has advantages for observing geostationary earth orbit (GEO) satellites r...
The detector subsystem of the Optical Wide-field Patrol (OWL) network efficiently acquires the posit...