• DocumentCode
    2679470
  • Title

    Synchronized clock using GPS carrier phase with self-calibration in holdover mode

  • Author

    Tu, K.Y. ; Chen, S.-S. ; Liao, C.S. ; Chang, F.R.

  • Author_Institution
    Nat. Time & Frequency Lab., Chunghwa Telecom Co Ltd., Taiwan, China
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    612
  • Lastpage
    617
  • Abstract
    Synchronized clock using GPS (Global Positioning System) carrier phase double-difference with self-calibration in holdover mode is presented. The GPS receivers used in our system were elaborately modified in order to estimate the frequency offset of the remote Oven-Controlled Crystal Oscillator (OCXO) clock with respect to the primary cesium atomic clock in real time by performing the double-differences on the GPS carrier phase observables. The PD (Proportional-Derivative) controller is employed to implement the controller of our system. Through the D/A converter, the remote clock was then steered to synchronize with the primary clock. Moreover, in the holdover mode, the predicted corrections of the frequency offset and aging are applied to the remote clock to improve the frequency accuracy when the GPS signals are absent. For averaging times of one day under the configuration of about a 30-meter baseline, our experimental results show that the accuracy of the remote clock can be improved from about 3×10-9 to about 3×10-14, and the stability of the remote clock can be improved from about 3×10-14 to about 2×10-14. With the self-calibration, the remote clock can be improved to obtain the frequency accuracy of about 1×10-11 holdover mode
  • Keywords
    Global Positioning System; calibration; frequency standards; synchronisation; time measurement; transfer standards; GPS carrier phase; PD controller; aging; double-differences; frequency accuracy; frequency offset; holdover mode; remote oven-controlled crystal oscillator; self-calibration; synchronized clock; Atomic clocks; Control systems; Frequency estimation; Frequency synchronization; Global Positioning System; Oscillators; PD control; Phase estimation; Proportional control; Real time systems;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frequency Control Symposium and Exhibition, 2000. Proceedings of the 2000 IEEE/EIA International
  • Conference_Location
    Kansas City, MO
  • ISSN
    1075-6787
  • Print_ISBN
    0-7803-5838-4
  • Type

    conf

  • DOI
    10.1109/FREQ.2000.887424
  • Filename
    887424