• DocumentCode
    771018
  • Title

    The excitation of UHF signals by partial discharges in GIS

  • Author

    Judd, M.D. ; Farish, O. ; Hampton, B.F.

  • Author_Institution
    Centre for Electr. Power Eng., Strathclyde Univ., Glasgow, UK
  • Volume
    3
  • Issue
    2
  • fYear
    1996
  • fDate
    4/1/1996 12:00:00 AM
  • Firstpage
    213
  • Lastpage
    228
  • Abstract
    The fundamental theory of the UHF method for detecting partial discharge (PD) in gas insulated substations (GIS) is presented. The effects of position, size, current amplitude and pulse shape of the PD source on the UHF signal can be predicted using this theory. Excitation of propagating electromagnetic waves by a PD current pulse within the coaxial waveguides formed by GIS components is explained by making use of dyadic Green´s functions for the electric fields of propagating modes. Experiments with a coaxial test chamber are used to verify the theoretical predictions, and comparisons are made between measured and simulated UHF signals. Some implications for the UHF measurement of PD are discussed, together with positioning and sensitivity requirements for UHF couplers. A scheme is proposed for standardizing PD measurements made using the UHF technique
  • Keywords
    Green´s function methods; UHF measurement; coaxial waveguides; gas insulated substations; insulation testing; partial discharges; power system measurement; GIS; PD current pulse; UHF couplers; UHF measurement; coaxial waveguide; dyadic Green functions; electromagnetic wave propagation; gas insulated substation; partial discharges; signal excitation; Coaxial components; Electromagnetic propagation; Electromagnetic waveguides; Gas insulation; Geographic Information Systems; Partial discharges; Pulse shaping methods; Shape; Substations; UHF measurements;
  • fLanguage
    English
  • Journal_Title
    Dielectrics and Electrical Insulation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1070-9878
  • Type

    jour

  • DOI
    10.1109/94.486773
  • Filename
    486773