Title :
Feasibility Analysis of the Positioning of Superconducting Fault Current Limiters for the Smart Grid Application Using Simulink and SimPowerSystem
Author :
Khan, Umer A. ; Seong, J.K. ; Lee, S.H. ; Lim, S.H. ; Lee, B.W.
Author_Institution :
Dept. of Electron., Electr., Control & Instrum. Eng., Hanyang Univ., Ansan, South Korea
fDate :
6/1/2011 12:00:00 AM
Abstract :
One of the most important topics regarding the application of superconducting fault current limiters (SFCL) for upcoming smart grid is related to its possible effect on the reduction of abnormal fault current and the suitable location in the micro grids. Due to the grid connection of the micro grids with the current power grids, excessive fault current is a serious problem to be solved for successful implementation of micro grids. However, a shortage of research concerning the location of SFCL in micro grid is felt. In this work, a resistive type SFCL model was implemented by integrating Simulink and SimPowerSystem blocks in Matlab. The designed SFCL model could be easily utilized for determining an impedance level of SFCL according to the fault-current-limitation requirements of various kinds of the smart grid system. In addition, typical smart grid model including generation, transmission and distribution network with dispersed energy resource was modeled to determine the location and the performance of the SFCL. As for a dispersed energy resource, 10 MVA wind farm was considered for the simulation. Three phase faults have been simulated at different locations in smart grid and the effect of the SFCL and its location on the wind farm fault current was evaluated. Consequently, the optimum arrangement of the SFCL location in Smart Grid with renewable resources has been proposed and its remarkable performance has been suggested.
Keywords :
distributed power generation; fault location; mathematics computing; power generation faults; power system simulation; smart power grids; superconducting fault current limiters; wind power plants; Matlab; SimPowerSystem; Simulink; apparent power 10 MVA; dispersed energy resource; distribution network; microgrid fault location; power grids; resistive type SFCL model; smart grid system; superconducting fault current limiter positioning; three phase faults; wind farm fault current; Fault currents; Mathematical model; Power transmission lines; Smart grids; Wind farms; Fault current; micro grid; smart grid; superconducting fault current limiter; wind farm;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2010.2089591