A replicable methodology for testing the size and placement of Battery Energy Storage Systems connected to high-voltage transmission networks is presented in this study. The proposed approach involves the power flow analysis inside a Renewable Energy Zone, namely a high-renewable area prone to grid congestion during peak generation periods, based on time-series hourly analysis over a critical month. The model includes detailed operational descriptions such as lines ampacity, battery state of charge limits, round-trip efficiency, self-discharge behavior, and ramp rate restrictions. The methodology distinguishes itself by its simplicity, flexibility, and use of open-source tools, making it a valuable asset for supporting future transmission planning in high-renewable-energy scenarios. The model was developed in Python (version 3.12) using the open-source Pandapower library, introducing an innovative constraint management criterion, and validated against real data provided by the national Transmission System Operator. The approach was then applied to a portion of the Sicilian grid with massive wind and solar penetration. Results show that strategic allocation of batteries leads to a significant reduction in line overloads (up to 13 GWh mitigated in one month), improves the dispatch of renewable energy generated within the Renewable Energy Zone and allows a more sustainable exercise of the power system.

Collura, N., Massaro, F., Di Mambro, E., Paradiso, S., Montana, F. (2026). A Methodology for Testing the Size and the Location of Battery Energy Storage Systems on Transmission Grids. ELECTRICITY, 7(2), 1-22 [10.3390/electricity7020035].

A Methodology for Testing the Size and the Location of Battery Energy Storage Systems on Transmission Grids

Collura, Nicola
;
Massaro, Fabio;Montana, Francesco
2026-04-04

Abstract

A replicable methodology for testing the size and placement of Battery Energy Storage Systems connected to high-voltage transmission networks is presented in this study. The proposed approach involves the power flow analysis inside a Renewable Energy Zone, namely a high-renewable area prone to grid congestion during peak generation periods, based on time-series hourly analysis over a critical month. The model includes detailed operational descriptions such as lines ampacity, battery state of charge limits, round-trip efficiency, self-discharge behavior, and ramp rate restrictions. The methodology distinguishes itself by its simplicity, flexibility, and use of open-source tools, making it a valuable asset for supporting future transmission planning in high-renewable-energy scenarios. The model was developed in Python (version 3.12) using the open-source Pandapower library, introducing an innovative constraint management criterion, and validated against real data provided by the national Transmission System Operator. The approach was then applied to a portion of the Sicilian grid with massive wind and solar penetration. Results show that strategic allocation of batteries leads to a significant reduction in line overloads (up to 13 GWh mitigated in one month), improves the dispatch of renewable energy generated within the Renewable Energy Zone and allows a more sustainable exercise of the power system.
4-apr-2026
Settore IIND-08/B - Sistemi elettrici per l'energia
Collura, N., Massaro, F., Di Mambro, E., Paradiso, S., Montana, F. (2026). A Methodology for Testing the Size and the Location of Battery Energy Storage Systems on Transmission Grids. ELECTRICITY, 7(2), 1-22 [10.3390/electricity7020035].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/713483
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