DocumentCode :
44733
Title :
Control of DC-Fault-Resilient Voltage Source Converter-Based HVDC Transmission System Under DC Fault Operating Condition
Author :
Yousefpoor, Nima ; Narwal, Ajit ; Bhattacharya, Subhashish
Author_Institution :
North Carolina State Univ., Raleigh, NC, USA
Volume :
62
Issue :
6
fYear :
2015
fDate :
Jun-15
Firstpage :
3683
Lastpage :
3690
Abstract :
Voltage source converter (VSC)-based high-voltage direct current (HVDC) transmission systems have attractive advantages compared to classical thyristor-based HVDC transmission systems. However, VSC-based HVDC transmission systems are vulnerable to dc side fault, and expensive dc circuit breakers are required to protect them against dc fault. This paper proposes a control method of a dc fault-resilient VSC which can be protected against dc fault without using expensive dc circuit breakers. In the VSC configuration, several H-bridge modules are connected in cascade, so the voltage balancing control of several floating dc capacitors is required. In this paper, an appropriate control structure with the capacitor voltage balancing controller is proposed. The appropriate control algorithm for dc fault operation and recovery after dc fault is also proposed. PSCAD simulation results are presented to validate the proposed control structure under normal and dc fault operating conditions. Real-time-digital-simulator results are also presented to verify the control structure.
Keywords :
HVDC power transmission; circuit breakers; power capacitors; power transmission control; voltage control; DC fault operating condition; DC fault resilient voltage source converter; H-bridge modules; HVDC transmission system; PSCAD simulation; capacitor voltage balancing controller; dc circuit breakers; dc fault operation; dc side fault; floating dc capacitors; high-voltage direct current transmission systems; real-time-digital-simulator; Capacitors; Circuit breakers; Circuit faults; HVDC transmission; Power conversion; Voltage control; Capacitor Voltage Balancing Controller; Capacitor voltage balancing controller; DC Fault; HVDC transmission systems; Recovery after DC Fault; Voltage Source Converter (VSC); dc fault; high-voltage direct current (HVDC) transmission systems; recovery after dc fault; voltage source converter (VSC);
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2014.2371431
Filename :
6960022
Link To Document :
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