DocumentCode :
52256
Title :
Enhanced Transformer Model for Low- and Mid-Frequency Transients—Part II: Validation and Simulation Results
Author :
Rezaei-Zare, Afshin
Author_Institution :
Hydro One Networks Inc., Toronto, ON, Canada
Volume :
30
Issue :
1
fYear :
2015
fDate :
Feb. 2015
Firstpage :
316
Lastpage :
325
Abstract :
The transformer model developed in Part I is validated based on the zero-sequence test data, a ferroresonance event, and the geomagnetically induced current (GIC) measurements. Various transformer core constructions, including single phase, three limb, five limb, conventional shell type, and seven-limb shell type are represented, based on the proposed transformer model. The simulation results show high accuracy of the proposed transformer model in representing the studied cases. The study reveals that the saturation of the transformers at a given GIC level is more severe than that predicted by the existing transformer models. Furthermore, the proposed transformer model clearly explains the reasons for the previously reported discrepancies between the GIC experimental and simulation results. The study also concludes that for an accurate transformer model, particularly for the three-limb core type, the detailed representation of the zero-sequence characteristic is an essential requirement. Such a characteristic can be obtained based on either the proposed approach of the paper or a zero-sequence dc excitation test in addition to the test data at the power frequency.
Keywords :
ferroresonance; transformer cores; transformers; conventional shell type transformer; enhanced transformer model; ferroresonance event; five limb transformer; geomagnetically induced current measurements; seven-limb shell type transformer; single phase transformer; three limb transformer; transformer core constructions; zero-sequence test data; Circuit faults; Equivalent circuits; Ferroresonance; Power transformers; Simulation; Transformer cores; Windings; Duality; ferroresonance; geomagnetically induced current (GIC); transformer model;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2014.2347934
Filename :
6889127
Link To Document :
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