Solar self-consumption
Store surplus photovoltaic production and use it when site demand exceeds local generation.
Industrial energy storage
An energy storage system is not a catalogue battery. It is infrastructure that must coordinate load profiles, generation, power, safety, controls and continuity requirements.
We begin with the available evidence: load curves, demand peaks, photovoltaic production, grid quality, operating shifts and installation constraints. This establishes the function of the storage system and the boundaries of its design.
The target may be higher solar self-consumption, peak control, support for priority loads, microgrid stability or reliable use of renewable generation in an isolated system. Each function requires a different architecture and control strategy.
Needs and applications
Store surplus photovoltaic production and use it when site demand exceeds local generation.
Control imported power through strategies based on measured profiles and connection limits.
Support selected loads and coordinate the grid, local generation and existing emergency systems.
Balance generation, demand, storage and load priorities where the grid is weak or unavailable.
How we develop the project
Where it applies
Cell chemistry, capacity, power, C-rate, thermal management, enclosure and controls cannot be selected independently. Energy Division evaluates the complete system and also identifies situations where storage would not deliver sufficient technical or operational value.
Presence and context
From Bari and through our presence in Dubai and Cartagena de Indias, we support industrial, infrastructure and off-grid assessments. Regulations, climate, grid availability and local maintenance capability are considered in every design rather than transferring one standard configuration between markets.
Share the available load profile, plant configuration and objective. The first assessment establishes whether a BESS is technically appropriate and which information is still required.