Title :
Design and Operational Characteristic Analysis of a Voltage-Controlled VSI With Decoupling Inductor Using a YBCO Coated Conductor
Author :
Min, Kyung-Il ; Lee, Su-won ; Lim, Sung-Hun ; Moon, Young-Hyun
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
fDate :
6/1/2009 12:00:00 AM
Abstract :
This paper proposes a voltage-controlled voltage source inverter (VCVSI) using a coated conductor (CC) as a decoupling inductor. Up to the present, the topologies to protect the power system from a short circuit effectively and to improve power quality simultaneously have been rarely developed. In the proposed topology, a decoupling inductor, which is essential component for a VCVSI operation, was designed with a YBCO CC and was integrated into a VCVSI. However, to determine the optimal CC specification, it is necessary to consider design parameters such as fault current, active power flow from the system and reactive power required by the decoupling inductor. With the optimal CC specification, the proposed system can perform the fault current limiting operation for a short circuit. In addition, in the normal time, it can compensate for the reactive power that a non-linear load requires, as well as perform load voltage stabilization. Specifications for a test model are discussed and the fault current limiting and power conditioning operations are presented. By using computer simulations, we validate the analyses and discuss its multi-operation.
Keywords :
barium compounds; conductors (electric); fault current limiters; inductors; invertors; power system protection; reactive power; voltage control; yttrium compounds; YBCO coated conductor; YBa2Cu3O7-delta; decoupling inductor; fault current limiting operation; power conditioning operation; power quality; power system protection; reactive power compensation; voltage source inverter; voltage stabilization; voltage-controlled VSI; Coated conductor; decoupling inductor; fault current; power conditioning operation; voltage-controlled voltage source inverter (VCVSI);
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2009.2017693