Title :
Analysis and application of transformer models in the ATP program for the study of ferroresonance
Author :
Viena, L.B. ; Moreira, F.A. ; Ferreira, N.R. ; de Castro, A.C. ; de Jesus, N.C.
Author_Institution :
Fed. Inst. of Technol. of Bahia, Salvador, Brazil
Abstract :
Ferroresonance is a phenomenon of complex nature which should be carefully analyzed so that preventive measures could be taken before its appearance may cause damages to electric power installations. There are some configurations as well as winding connections in transformers that may lead to the appearance of ferroresonance. In particular, middle-voltage underground networks formed by insulated cables, supplying unloaded or slightly loaded transformers. In order to identify the phenomenon and the nature of overvoltages, simulation is normally performed in EMTP-type programs. The ATP (Alternative Transients Program) has been chosen in this work. Several transformer models have been implemented in ATP, in particular the SATURABLE, BCTRAN and Hybrid (XFMR) models. The XFMR has been recently implemented in ATP and is still not yet widely known by the scientific community. Several simulations are performed with these models for typical configurations of distribution networks.
Keywords :
distribution networks; ferroresonance; power engineering computing; transformers; ATP program; BCTRAN model; EMTP-type programs; Hybrid model; SATURABLE model; XFMR model; alternative transient program; distribution networks; electric power installations; ferroresonance; insulated cables; middle-voltage underground networks; overvoltages; transformer models; winding connections; Capacitance; Circuit faults; Ferroresonance; Power transformer insulation; Transformer cores; Windings; ATP; BCTRAN; Distribution transformer; Hybrid model; SATURABLE; ferroresonance; simulation;
Conference_Titel :
Transmission and Distribution Conference and Exposition: Latin America (T&D-LA), 2010 IEEE/PES
Conference_Location :
Sao Paulo
Print_ISBN :
978-1-4577-0488-8
DOI :
10.1109/TDC-LA.2010.5762966