Experimental validation of control strategies for a microgrid test facility including a storage system and renewable generation sets
Publication: Research - peer-review › Article in proceedings – Annual report year: 2012
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Experimental validation of control strategies for a microgrid test facility including a storage system and renewable generation sets. / Baccino, Francesco; Marinelli, Mattia; Silvestro, Federico; Forero Camacho, Oscar Mauricio; Isleifsson, Fridrik Rafn; Nørgård, Per Bromand.
In: Proceedings. 2012.Publication: Research - peer-review › Article in proceedings – Annual report year: 2012
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TY - GEN
T1 - Experimental validation of control strategies for a microgrid test facility including a storage system and renewable generation sets
A1 - Baccino,Francesco
A1 - Marinelli,Mattia
A1 - Silvestro,Federico
A1 - Forero Camacho,Oscar Mauricio
A1 - Isleifsson,Fridrik Rafn
A1 - Nørgård,Per Bromand
AU - Baccino,Francesco
AU - Marinelli,Mattia
AU - Silvestro,Federico
AU - Forero Camacho,Oscar Mauricio
AU - Isleifsson,Fridrik Rafn
AU - Nørgård,Per Bromand
PY - 2012
Y1 - 2012
N2 - The paper is aimed at describing and validating some control strategies in the SYSLAB experimental test facility characterized by the presence of a low voltage network with a 15 kW-190 kWh Vanadium Redox Flow battery system and a 11 kW wind turbine. The generation set is connected to the local network and is fully controllable by the SCADA system. The control strategies, implemented on a local pc interfaced to the SCADA, are realized in Matlab-Simulink. The main purpose is to control the charge/discharge action of the storage system in order to present at the point of common coupling the desired power or energy profiles.
AB - The paper is aimed at describing and validating some control strategies in the SYSLAB experimental test facility characterized by the presence of a low voltage network with a 15 kW-190 kWh Vanadium Redox Flow battery system and a 11 kW wind turbine. The generation set is connected to the local network and is fully controllable by the SCADA system. The control strategies, implemented on a local pc interfaced to the SCADA, are realized in Matlab-Simulink. The main purpose is to control the charge/discharge action of the storage system in order to present at the point of common coupling the desired power or energy profiles.
BT - Proceedings
T2 - Proceedings
ER -