Abstract
This study is aimed to model and develop a stable test bed for a wind farm composed of six doubly-fed induction generators (DFIGs) connected to a distribution system based on the OPAL-RT's eMEGASim® real-time digital simulator. The system in this study consists of a 9 MW wind farm, an average SimpowerSystems® DFIG wind turbine, connected to a 13.8 kV IEEE 14 bus distribution network. An initial Simulink model was designed and built using SimPowerSystem of Matlab since most of existing studies on the simulation relevant to wind power mainly focus on off-line simulation. The model was then rebuilt on the RT-LAB environment based on OPAL-RT's eMEGASim® real-time digital simulator to test the wind farm performance at the same rate as actual time. After running the model on eMEGASim® realtime digital simulator, some studies such as three-phase to ground fault and voltage sag have been made to test the response of the model.
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