Every time laboratory in the world follows an international standard time scale and GPS (Global Positioning System) is playing an important role. Korea Research Institute of Standards and Science is also operating a permanent GPS station for time transfer. To improve the accuracy and precision of the clock offsets derived from GPS we used carrier phase measurements. In addition, we tested four different kinds of GPS satellite orbits and compared the results. The precision of the time offsets using rapid and ultra-rapid orbits was about 0.5 nanoseconds (ns). In the case of broadcast orbits, the precision was better than 2 ns
Two main objectives in time and frequency metrology are the realization of the SI unit of time, and ...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
GPS Satellites transmit two independent signals. One is C/A code (course acquisition signal) which c...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Enhancing the positioning precision is the primary pursuit of global positioning system (GPS) users....
Clock transportation is a historically proven time transfer method for the calibration of time links...
Clock transportation is a historically proven time transfer method for the calibration of time links...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
As one of its activities as an Analysis Center in the International GPS Service (IGS), the Jet Propu...
In this paper, a real-time system for clock offset estimation of GPS satellites is presented. The al...
Frequency differences between major national timing centers are being resolved with uncertainty of l...
The United States Naval Observatory (USNO) produces GPS carrier-phase time-transfer (GPSCPTT) estima...
Two main objectives in time and frequency metrology are the realization of the SI unit of time, and ...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
GPS Satellites transmit two independent signals. One is C/A code (course acquisition signal) which c...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Enhancing the positioning precision is the primary pursuit of global positioning system (GPS) users....
Clock transportation is a historically proven time transfer method for the calibration of time links...
Clock transportation is a historically proven time transfer method for the calibration of time links...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
As one of its activities as an Analysis Center in the International GPS Service (IGS), the Jet Propu...
In this paper, a real-time system for clock offset estimation of GPS satellites is presented. The al...
Frequency differences between major national timing centers are being resolved with uncertainty of l...
The United States Naval Observatory (USNO) produces GPS carrier-phase time-transfer (GPSCPTT) estima...
Two main objectives in time and frequency metrology are the realization of the SI unit of time, and ...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
GPS Satellites transmit two independent signals. One is C/A code (course acquisition signal) which c...