DocumentCode
1252212
Title
Five-legged wound-core transformer model: derivation, parameters, implementation and evaluation
Author
Mork, B.A.
Author_Institution
Dept. of Electr. Eng., Michigan Technol. Univ., Houghton, MI, USA
Volume
14
Issue
4
fYear
1999
fDate
10/1/1999 12:00:00 AM
Firstpage
1519
Lastpage
1526
Abstract
The ability to predict or confirm ferroresonance and to evaluate its severity depends primarily on the correctness of the transformer model used in the computer simulation. An equivalent circuit is developed here for the widely used three-phase grounded-wye to grounded-wye five-legged wound-core distribution transformer. Recently developed equivalent circuits are generally correct, but cannot faithfully reproduce all of the ferroresonant modes possible in this transformer. This new equivalent circuit is derived using duality transformations. Core saturation and losses and coil capacitances are included in the model. Model parameters are obtained via measurement, obviating the need for proprietary manufacturer design information. The model is implemented in EMTP. Simulation results are presented and compared to measurements. A technique for predicting ferroresonance on a system level, based on the use of bifurcation diagrams and Poincare sections, is developed and implemented using EMTP. The model performs quite well, even though coil capacitances are not entirely included in the model. One of the key advancements is the development of a bifurcation simulation method to predict ferroresonant behaviors for a large range of capacitance values
Keywords
EMTP; Poincare mapping; bifurcation; capacitance; equivalent circuits; ferroresonance; power transformers; transformer cores; transformer windings; EMTP; Poincare sections; bifurcation diagrams; coil capacitances; computer simulation; core losses; core saturation; duality transformations; equivalent circuit; ferroresonance; ferroresonant modes; five-legged wound-core transformer model; Bifurcation; Capacitance; Circuit faults; Coils; Computer simulation; EMTP; Equivalent circuits; Ferroresonance; Predictive models; Transformer cores;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.796249
Filename
796249
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