• DocumentCode
    1906721
  • Title

    Evaluation of Precision Time synchronisation methods for substation applications

  • Author

    Ingram, David M. E. ; Schaub, Pascal ; Campbell, Duncan A. ; Taylor, Richard R.

  • Author_Institution
    Sch. of Electr. Eng. & Comput. Sci., Queensland Univ. of Technol., Brisbane, QLD, Australia
  • fYear
    2012
  • fDate
    24-28 Sept. 2012
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    Many substation applications require accurate time-stamping. The performance of systems such as Network Time Protocol (NTP), IRIG-B and one pulse per second (1-PPS) have been sufficient to date. However, new applications, including IEC 61850-9-2 process bus and phasor measurement, require accuracy of one microsecond or better. Furthermore, process bus applications are taking time synchronisation out into high voltage switchyards where cable lengths may have an impact on timing accuracy. IEEE Std 1588, Precision Time Protocol (PTP), is the means preferred by the smart grid standardisation roadmaps (from both the IEC and US National Institute of Standards and Technology) of achieving this higher level of performance, and integrates well into Ethernet based substation automation systems. Significant benefits of PTP include automatic path length compensation, support for redundant time sources and the cabling efficiency of a shared network. This paper benchmarks the performance of established IRIG-B and 1-PPS synchronisation methods over a range of path lengths representative of a transmission substation. The performance of PTP using the same distribution system is then evaluated and compared to the existing methods to determine if the performance justifies the additional complexity. Experimental results show that a PTP timing system maintains the synchronising performance of 1-PPS and IRIG-B timing systems, when using the same fibre optic cables, and further meets the needs of process buses in large substations.
  • Keywords
    IEC standards; IEEE standards; local area networks; optical cables; phasor measurement; power engineering computing; protocols; smart power grids; substation automation; 1-PPS; Ethernet based substation automation systems; IEC 61850-9-2 process bus; IEEE Std 1588; IRIG-B; NTP; PTP; US National Institute of Standards and Technology; automatic path length compensation; cable lengths; cabling efficiency; distribution system; fibre optic cables; high voltage switchyards; network time protocol; one pulse per second; phasor measurement; precision time protocol; precision time synchronisation methods; process bus applications; redundant time sources; smart grid standardisation roadmaps; time-stamping; timing accuracy; transmission substation; Delay; Optical pulses; Optical receivers; Optical transmitters; Power cables; Substations; Synchronization; Ethernet networks; IEC 61850; IEEE 1588; Precision Time Protocol; performance evaluation; power transmission; protective relaying; smart grids; time measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Precision Clock Synchronization for Measurement Control and Communication (ISPCS), 2012 International IEEE Symposium on
  • Conference_Location
    San Francisco, CA
  • ISSN
    1949-0305
  • Print_ISBN
    978-1-4577-1714-7
  • Type

    conf

  • DOI
    10.1109/ISPCS.2012.6336630
  • Filename
    6336630