DocumentCode
1994359
Title
A surge-less solid-state dc circuit breaker for voltage source converter based HVDC transmission systems
Author
Sano, Kenichiro ; Takasaki, Masahiro
Author_Institution
Syst. Eng. Res. Lab., Central Res. Inst. of Electr. Power Ind., Komae, Japan
fYear
2012
fDate
15-20 Sept. 2012
Firstpage
4426
Lastpage
4431
Abstract
This paper proposes a dc circuit breaker for voltage source converter (VSC) based high voltage dc (HVDC) transmission systems. The dc circuit breaker is a solid-state breaker which consists of many semiconductor devices in series with maintaining equal voltage balancing, making it possible to apply to high voltage applications. Moreover, the surge voltage across the circuit breaker is reduced by employing a freewheeling diode. In a system rated at 300 MW in power and 250 kV in dc voltage, conduction loss of the proposed circuit breaker consisting of 4.5 kV devices is estimated at 0.045% of the rated power, which is enough small comparing to the VSCs´ power loss. A downscaled HVDC transmission system model rated at 10 kW in power and 360 V in dc voltage was built and a series of experimental results demonstrate the dc fault clearing and rapid restoration of power transmission.
Keywords
HVDC power convertors; HVDC power transmission; circuit breakers; power transmission faults; DC fault clearing; VSC power loss; VSC-based HVDC transmission systems; conduction loss; downscaled HVDC transmission system model; equal-voltage balancing; freewheeling diode; high-voltage DC transmission systems; power 10 kW; power 300 MW; power transmission restoration; semiconductor devices; surge voltage; surgeless solid-state DC circuit breaker; voltage 250 kV; voltage 360 V; voltage 4.5 kV; voltage source converter; Capacitors; Circuit breakers; Circuit faults; Fault currents; HVDC transmission; Power conversion; dc circuit breaker; fault protection; high voltage dc transmission; voltage source converter;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Congress and Exposition (ECCE), 2012 IEEE
Conference_Location
Raleigh, NC
Print_ISBN
978-1-4673-0802-1
Electronic_ISBN
978-1-4673-0801-4
Type
conf
DOI
10.1109/ECCE.2012.6342220
Filename
6342220
Link To Document