Demand response for smart microgrid: Initial results

SA Pourmousavi, MH Nehrir - ISGT 2011, 2011 - ieeexplore.ieee.org
ISGT 2011, 2011ieeexplore.ieee.org
This study is an attempt to address the frequency and voltage regulation inside of an
islanded microgrid. Central demand response along with an adaptive hill climbing
methodology is applied to a small islanded microgrid powered by a diesel generator. All
dynamic models are developed in MATLAB/Simulink®. Simulation results show that the
proposed method has the potential to suppress the frequency variations and stabilize the
voltage of the microgrid.
This study is an attempt to address the frequency and voltage regulation inside of an islanded microgrid. Central demand response along with an adaptive hill climbing methodology is applied to a small islanded microgrid powered by a diesel generator. All dynamic models are developed in MATLAB/Simulink ® . Simulation results show that the proposed method has the potential to suppress the frequency variations and stabilize the voltage of the microgrid.
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