DocumentCode
70360
Title
Wind Turbine Transformers Protection Method Against High-Frequency Transients
Author
Smugala, D. ; Piasecki, W. ; Ostrogorska, M. ; Florkowski, M. ; Fulczyk, M. ; Granhaug, O.
Author_Institution
ABB Corp. Res. Center, Kraków, Poland
Volume
30
Issue
2
fYear
2015
fDate
Apr-15
Firstpage
853
Lastpage
860
Abstract
A new wind turbine transformers protection method against high du/dt switching transients taking place during a wind turbine operation is described. High-frequency transients, characterized by a high rate of voltage rise (du/dt) and overvoltage at the wind turbine transformer high-voltage terminals may be a result of operations of the turbine switchgear typically comprising a vacuum circuit breaker. The protection concept described in this paper is a follow up of research activities on a transients suppressing method dedicated for distribution transformers. The principle of operation of the protective device proposed and parameters optimization procedures for windmill transformers are provided in this paper. The performance of the device was verified by means of Alternative Transients Program-Electromagnetic Transients Program simulations. The physical device was built and experimentally verified by full-scale functional tests reflecting a real wind turbine power network.
Keywords
circuit breakers; power generation protection; power transformers; wind turbines; distribution transformers; full-scale functional tests; high-frequency transients; parameters optimization procedures; protective device; switching transients; transients program-electromagnetic transients program simulations; turbine switchgear; vacuum circuit breaker; wind turbine operation; wind turbine power network; wind turbine transformers protection method; windmill transformers; Inductors; Magnetic cores; Oil insulation; Power transformer insulation; Transient analysis; Voltage control; Wind turbines; Fast transients; transformers protection; vacuum breakers; very fast transients (VFTs); wind turbines operation;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2014.2343261
Filename
7044612
Link To Document