Helmond,
The innovative battery storage system is located in the pedestrian passageway beneath a prominent modern office building adjacent to the central railway station.
Designed by architect
Given the substantial size of the building, the complexity of the surrounding infrastructure, and challenges posed by the ongoing COVID-19 pandemic, the project was a meticulous and time-consuming endeavor. The safety considerations associated with installing a battery inside a building, traversed daily by thousands of people, required very careful planning and calculations, as well as meticulous permitting procedures.
The resulting Energy Storage System is a 500 kW/552 kWh installation housed in a purpose-built container with an expanded floor area to accommodate the maximum weight per square meter due to the building's underlying parking garage. For enhanced safety, Li-LFP batteries have been installed on either side of the 500-kW modular and bi-directional converter, with each battery room equipped with an automatic aerosol fire extinguishing system. The system adheres to the latest NEN 4288 norm for energy storage systems, to which Exide's Customized Energy Systems (CES) made significant contributions. The system is encased in glass, allowing passers-by to view the installation, with signage explaining the purpose and importance of energy storage.
The system serves multiple functions, including optimizing the utilization of PV energy, peak shaving for large consumers like the building's fast elevator system and EV chargers, as well as support for the HVAC system. These measures result in reduced energy costs for the building's occupants and alleviate peak loads on the inner-city electricity cables of the surrounding area.
Energierijk Den Haag
Invensis
TROEF Energy
The Exide Technologies CES team expresses their gratitude to
For more information, please visit:
Customized Energy Systems | Exide (exidegroup.com)
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