Warianty tytułu
Konferencja
Computer Application in Electrical Engineering / Scientific Conference [11; April 10-12, 2006; Poznan]
Języki publikacji
Abstrakty
An analysis of the lightning performance of a HV transmission line using three models of back-flashover across the insulators is presented. These models FLASH, NEWFLASH and SWITCH are based on various physical assumptions for the flashover mechanism. By means of simulation using digital models of power system elements developed within the ATP-EMTP program with its MODELS-feature, the transient voltages for various back-flashover models are compared. The mathematical model of the system includes adequate ATP-EMTP models of 400 kV transmission line, towers and grounding system.
Słowa kluczowe
Rocznik
Tom
Strony
21-33
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
Bibliografia
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- [2]Chowdhuri P., Li S., Yan P.: Rigorous analysis of back-flashover outages caused by direct lightning strokes to overhead transmission lines. IEE Proceedings on Generation, Transmission and Distribution, Vol. 149, No. 1, January 2002, pp. 58-65.
- [3]Chowdhuri P.: Electromagnetic Transients in Power Systems. Research Studies Press Ltd., 1996.
- [4]Martinez J.A., Martin-Arnedo J.: Expanding capabilities of EMTP-like tools: From analysis to design. IEEE Transactions on Power Delivery, Vol. 18, No. 4, October 2003, pp. 1569-1571.
- [5]Nucci C.A., Rachidi F.: Interaction of electromagnetic fields generated by lightning with overhead electrical networks. In: The Lightning Flash, Edited by Cooray V. The Institution of Electrical Engineers, London, 2003.
- [6]ATP-EMTP: Alternative Transients Program. European EMTP Users Group, www.eeug.org.
- [7]ATP-EMTP Beginner's Guide. European EMTP Users Group, www.eeug.org.
- [8]Prikler L., H0idalen H.K.: Users' Manual of ATPDRAW Version 3.5 for Windows 9x/NT/2000/XP. European EMTP Users Group, www.eeug.org.
- [9]Hevia O.P.: Impulse type sources in ATP. EEUG News, Vol. 4, No. 3-4, August-November 1998, pp. 56-62.
- [10]Hevia O.P.: Surge sources in ATP. EEUG News, Vol. 7, No. 1-2, February-May 2001, pp. 16-24.
- [11]Dudurych I.M., Gallagher T.J., Corbett J., Val Escudero M.: EMTP analysis of the lightning performance of a HV transmission line. IEE Proceedings on Generation, Transmission and Distribution, Vol. 150, No. 4, July 2003, pp. 501-506.
- [12]Martinez J.A., Castro-Aranda F.: Lightning performance analysis of overhead transmission lines using the EMTP. IEEE Transactions on Power Delivery, Vol. 20, No. 3, July 2005, pp. 2200-2210.
- [13]IEEE Working Group Report: Estimating lightning performance of transmission lines II - Updates to analytical models. IEEE Transactions on Power Delivery, Vol. 8, No. 3, July 1993, pp. 1254-1267.
- [14]Nowak W.: Identification of overvoltage risks of high voltage electrical power systems owing to lightning discharges. Dissertations and monographs of Academy of Mining and Metallurgy, No. 139, Cracow 2005 (in polish).
- [15]Pigini A, Rizzi G., Garbagnati E., Porrino A., Pesavento G.: Performance of large gaps under lightning overvoltages: Experimental study and analysis of accuracy of predetermination methods. IEEE Transactions on Power Delivery, Vol. 4, No. 2, April 1989, pp. 1379-1392.
- [16]IEEE Modeling and Analysis of System Transients Working Group: Modeling guidelines for fast front transients. IEEE Transactions on Power Delivery, Vol. 11, No. 1, January 1996, pp. 302-309.
- [17]Motoyama H.: Experimental study and analysis of breakdown characteristics of long air gaps with short tail lightning impulse. IEEE Transactions on Power Delivery, Vol. 11, No. 2, April 1996, pp. 972-979.
- [18]Heidalen H.K., Prikler L.: ATPDRAW for Windows - Users' Manual. EEUG News, Vol. 4, No. 3-4, August-November 1998, pp. 25-32.
- [19]Prikler L.: Lightning performance and switching overvoltage studies of an uprated transmission line. EEUG News, Vol. 4, No. 3-4, August-November 1998, pp. 109-117.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0069-0008