DocumentCode :
1677044
Title :
A Novel Control Strategy to Reduce Transformer Inrush Currents by Series Compensator
Author :
Shyu, Juei-Lung
Author_Institution :
Dept. of Electr. Eng., Kao Yuan Univ., Kaohsiung
Volume :
2
fYear :
0
Firstpage :
1283
Lastpage :
1288
Abstract :
Inrush currents generated by unloaded power transformer often reduce power quality on the system. To improve this situation, this paper proposes an active inrush current compensator that is capable of reducing the inrush current effectively during startup mode. The proposed compensator is based on an inverter-based series compensator which is comprised of a single-phase inverter and series transformer. Voltage sags are very frequent events with energization of transformer or starting of large motors although their duration is very short. Hence, during voltage stabilizer mode, the existing series compensator is controlled by a voltage stabilizer controller and superimposes a compensating voltage on the inverter output whenever the load voltage deviate from the nominal value. This strategy is easier to implement because it requires no information of the transformer parameters, power-on angle of circuit breaker and measurement of residual flux. Some simulations results show satisfactory performance of the proposed technique on both inrush current reduction and correcting voltage sags
Keywords :
circuit breakers; invertors; power supply quality; power transformers; starting; voltage control; circuit breaker; inrush current compensator; inverter-based series compensator; motor starting; power quality reduction; residual flux measurement; series compensator; series transformer; single-phase inverter; transformer inrush current reduction control strategy; unloaded power transformer; voltage sags; voltage stabilizer controller; Character generation; Circuit breakers; Circuit simulation; Inverters; Power quality; Power transformers; Surge protection; Thickness control; Voltage control; Voltage fluctuations; inrush current; series compensator; transformer; voltage sag;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Drives Systems, 2005. PEDS 2005. International Conference on
Conference_Location :
Kuala Lumpur
Print_ISBN :
0-7803-9296-5
Type :
conf
DOI :
10.1109/PEDS.2005.1619885
Filename :
1619885
Link To Document :
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