Title :
Research on application of TCR+FC typed SVC in power quality integrated management for power traction system
Author :
Dan Wang ; Chaoying Yang ; Xin Zhang ; Jinhao Wang ; Gengyin Li
Author_Institution :
State Key Lab. of Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
Abstract :
With characteristics such as impact, asymmetric and nonlinear, the electromotive in electrified railway is a typical kind of single-phase load. Electrified railway connected to power grid will bring a lot of power quality problems. To solve harmonic problems and three-phase voltage unbalance caused by the negative sequence, this paper proposes an integrated management of power quality problems based on the three-phase static var compensator (SVC). In this management, SVC is composed of fixed capacitors (FC) and thyristor controlled reactor (TCR). This SVC management is accessed to the high-voltage side of traction substation by a dedicated transformer, which focuses on compensating the negative sequence and the reactive power. Based on the analysis of this TCR+FC typed SVC, a composite control system is used in this paper, which consists of a open-loop control system and a closed-loop control system. By modelling and simulating the actual situation of a traction station in PSCAD/EMTDC software, the feasibility of the comprehensive power quality controlling device is verified and we conclude results that this TCR+FC typed SVC management can effectively control three-phase unbalance and harmonic power quality problems.
Keywords :
closed loop systems; open loop systems; power capacitors; power supply quality; railway electrification; reactive power; static VAr compensators; substations; traction; PSCAD-EMTDC software; TCR+FC typed SVC; closed-loop control system; composite control system; electrified railway; electromotive; fixed capacitors; harmonic power quality problems; integrated management; negative sequence; open-loop control system; power grid; power traction system; reactive power; single-phase load; static var compensator; three-phase voltage unbalance; thyristor controlled reactor; traction substation; Steinmetz balance principle; instantaneous reactive power; power quality; theory PSCAD/EMTDC; thyristor controlled reactor (TCR);
Conference_Titel :
Sustainable Power Generation and Supply (SUPERGEN 2012), International Conference on
Conference_Location :
Hangzhou
Electronic_ISBN :
978-1-84919-673-4
DOI :
10.1049/cp.2012.1749