• DocumentCode
    1348120
  • Title

    Switching overvoltage analysis and air clearance design on the KEPCO 765 kV double circuit transmission system

  • Author

    Kim, Jeong-Boo ; Shim, Eung-Bo ; Shim, Jeong-Woon

  • Author_Institution
    Korea Electric Power Res. Inst., Taejon, South Korea
  • Volume
    15
  • Issue
    1
  • fYear
    2000
  • fDate
    1/1/2000 12:00:00 AM
  • Firstpage
    381
  • Lastpage
    386
  • Abstract
    This paper presents the results of the air clearance design on the KEPCO 765 kV double circuit transmission system. At first the authors performed the switching overvoltage study. The switching overvoltage was analyzed by EMTP (Electro-Magnetic Transient Program) and TNA (Transient Network Analyzer). The full scale test for the air insulation strength of 765 kV double circuit transmission towers was performed by a 4 MV outdoor impulse generator. The simultaneous fault clearing case of a single line-to-ground fault at each circuit was considered because the probability of simultaneous single line-to-ground fault at each circuit is very high. However, the reclosing overvoltages with preinsertion resistor are lower than the simultaneous fault clearing overvoltages when the transmission line is short (about 170-180 km). The maximum phase to ground switching overvoltage in the simultaneous fault clearing case is 1.9 p.u. and the maximum switching overvoltage between phase to phase is 3.3 p.u. The required air clearance in a tower at the altitude of below 1000 m is 4950 mm to endure the maximum switching overvoltage of 1.9 p.u. The standard deviation of 5% in switching surge flashover voltage was verified from the full scale test
  • Keywords
    EMTP; overvoltage; power system analysis computing; power transmission faults; switching transients; 170 to 180 km; 4 MV; 4950 mm; 765 kV; EMTP; KEPCO; Korea; TNA; air clearance design; air insulation strength; computer simulation; double circuit transmission system; outdoor impulse generator; simultaneous fault clearing case; single line-to-ground fault; switching overvoltage analysis; transmission towers; Circuit faults; Circuit testing; EMTP; Impulse testing; Insulation testing; Performance evaluation; Poles and towers; Power system transients; Transient analysis; Voltage control;
  • fLanguage
    English
  • Journal_Title
    Power Delivery, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8977
  • Type

    jour

  • DOI
    10.1109/61.847277
  • Filename
    847277