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2009 | Vol. 27, No. 4/2 | 1147--1156
Tytuł artykułu

Comparative analysis of lightning overvoltages in distribution lines on the ground of laboratory tests and measurements

Autorzy
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Determination of extreme voltages induced on overhead and cable power lines by nearby lightning strokes is a complex problem. Results of computer simulation (laboratory tests) and measurements of such overvoltage processes due to lightning discharges occurring in overhead and cable lines, as elements of a distribution network, are presented. A principal, simulation tool was the PSpice program.
Wydawca

Rocznik
Strony
1147--1156
Opis fizyczny
Bibliogr. 21 poz.
Twórcy
autor
  • EnergiaPro Energetic Concern Co. Department of Opole, Technical University of Opole Department of Electrical Engineering, Poland
Bibliografia
  • [1] AGRAWAL A.K., PRICE H.J., GURBAXANI S.H., IEEE Trans. Electomagn. Compat., EMC-22 (1980), 119.
  • [2] ANDREOTTI A., DE MARTINIS U., VEROLINO L., Adv. Eng. Software 31 (2000), 757.
  • [3] BAJOREK J., GAMRACKI M., Effectiveness of mathematical modelling of lightning coupling to overhead conductors, Proc. 26th Int. Conf. Lightning Protection, Cracow, 2002, 208–213.
  • [4] BAJOREK J., MASŁOWSKI G., Mathematical models of electromagnetic field of lightning, Proc. 22nd Inte. Conf. SPETO, Gliwice–Ustroń 1999, 97–100.
  • [5] BARANOWSKI K., WELO A., Simulation electronics chosen. MIKOM, Warsaw, 1996 (in Polish).
  • [6] COULSON C.A., JEFFREY A., Waves, mathematics models. WNT, Warsaw, 1982.
  • [7] FLISOWSKI Z., KOSZTALUK R., Przeg. Elektrotechn., No. 2, 1997 (in Polish). 1156 W. SKOMUDEK
  • [8] GACEK Z., SKOMUDEK W., An analysis of overvoltage hazard due to lightning discharges in medium voltage overhead lines with covered conductors. Proc. of the 12th Int. Symp. High Voltage Engineering – ISH, Delft, 2003, 77.
  • [9] GACEK Z., SKOMUDEK W., Energetyka, No. 1, 2003 (in Polish).
  • [10] KRAFT L.A., IEEE Trans. Power Syst., 6 (1991).
  • [11] MCDERMOTT T.E., SHOT T.A., ANDERSON J.G., IEEE Trans. Power Delivery, 9 (1994).
  • [12] NUCCI C.A., RACHIDI F., IANOZ M, MAZZETTI C., IEEE Trans. EMC, 35 (1993), 75.
  • [13] RUSCK S., Induced lightning overvoltages on power transmission lines with special reference to the overvoltage protection of low voltage networks. Ph.D. Thesis, the Kungi, Tekniska Hogskolan, Stockholm, Sweden, 1957.
  • [14] SKOMUDEK W., J. Electr. Eng., No. 5–6, Slovakia, 2004.
  • [15] SKOMUDEK W., Evaluation to make use of PSpice program to modelling lightning inducted voltages of power systems. Computer Application in Electrical Engineering, Zakopane, 2005.
  • [16] SKOMUDEK W., GACEK Z., Influence of selected parameters of overvoltages on hazard of insulating systems in MV power lines. Electronic and Electrical Engineering, No. 2, Lithuania, 2006.
  • [17] SKOMUDEK W., Registration of time dependent overvoltages in authentic overhead/cable lines between 15/0.4 kV switching stations: Prudnik and Oczyszczalnia Prudnik. 7, 2004 (in Polish).
  • [18] SKOMUDEK W., Registration of time dependent overvoltages in authentic cable lines in GSZ Cementownia Górażdże, Chorula, 11, 2004 (in Polish).
  • [19] TARCZYŃSKI W., SKOMUDEK W., Wave phenomena in MV cable lines, Rep. from own tests, Opole 2004 (in Polish)
  • [20] TAYLOR C.D., HARRISON C.W., SATTERWHITE R.S., IEEE Trans. Antennas Propagat., AP-13, 1965.
  • [21] YOKOYAMA S., IEEE Tran. Power App. Syst., 103 (1984). Received 20 April 2007
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0012-0021
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