This work deals with the design and the implementation of a real-time control strategy aimed at minimizing the impact of Microgrids (MGs) on distribution networks. The proposed procedure employs Battery Energy Storage Systems to track desired active power profiles at the MG tie-line. The control logic relies on a PID regulator characterized by saturation limits whose dynamic setting depends on the state of charge of the storage unit. The controller has been tested on the field, with the aim of minimizing the tie-line active power of a real MG over a 24 hours time window. Experimental results prove the effectiveness of the developed procedure.

Minimization of Microgrid Impact on Distribution Network Systems Through BESS Real-Time Control

De Tuglie, Enrico;Introna, Anna;Montegiglio, Pasquale
;
Passarelli, Annarita
2022-01-01

Abstract

This work deals with the design and the implementation of a real-time control strategy aimed at minimizing the impact of Microgrids (MGs) on distribution networks. The proposed procedure employs Battery Energy Storage Systems to track desired active power profiles at the MG tie-line. The control logic relies on a PID regulator characterized by saturation limits whose dynamic setting depends on the state of charge of the storage unit. The controller has been tested on the field, with the aim of minimizing the tie-line active power of a real MG over a 24 hours time window. Experimental results prove the effectiveness of the developed procedure.
2022
2022 Workshop on Blockchain for Renewables Integration, BLORIN 2022
978-1-6654-7249-4
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/249345
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