DocumentCode
1100915
Title
Feasibility of Electronic Tap-Changing Stabilizers for Medium Voltage Lines—Precedents and New Configurations
Author
García, Salvador Martínez ; Rodríguez, Juan Carlos Campo ; Jardini, José Antonio ; López, Joaquín Vaquero ; Segura, Alfonso Ibarzábal ; Cid, Pedro María Martínez
Author_Institution
Dept. de Ing. Electr., Electron. y de Control (DIEEC), Univ. Nac. de Educ. a Distancia (UNED), Madrid
Volume
24
Issue
3
fYear
2009
fDate
7/1/2009 12:00:00 AM
Firstpage
1490
Lastpage
1503
Abstract
Thyristor-based onload tap-changing AC voltage stabilizers are cheap and robust. They have replaced most mechanical tap-changers in low voltage applications from 300 VA to 300 kVA. Nevertheless, this replacement hardily applies to tap-changers associated to transformers feeding medium-voltage lines (typically 69 kV primary, 34.5 kV line, 10 MVA) which need periodical maintenance of contacts and oil. The Electric Power Research Institute (EPRI) has studied the feasibility of this replacement. It detected economical problems derived from the need for series association of thyristors to manage the high voltages involved, and from the current overload developed under line fault. The paper reviews the configurations used in that field and proposes new solutions, using a compensating transformer in the main circuit and multi-winding coils in the commutating circuit, with reduced overload effect and no series association of thyristors, drastically decreasing their number and rating. The stabilizer can be installed at any point of the line and the electronic circuit can be fixed to ground. Subsequent works study and synthesize several commutating circuits in detail.
Keywords
commutation; compensation; on load tap changers; thyristor applications; transformer windings; voltage regulators; Electric Power Research Institute; apparent power 300 VA to 300 kVA; commutating circuit; current overload effect; electronic on load tap-changing AC voltage stabilizer; line fault; medium voltage lines; multiwinding coil; thyristor-based stabilizer; Circuit faults; Coils; Electrical fault detection; Low voltage; Medium voltage; Petroleum; Power generation economics; Robustness; Thyristors; Transformers; AC voltage stabilizer; onload tap-changer (OLTC); power conditioning; power quality; voltage control;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2009.2021032
Filename
5109865
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