Store the energy. Unlock the flexibility.

A battery energy storage system connects battery modules, power conversion, cooling and local protection. See what happens inside—and where intelligent decisions add value.

Conceptual containerised battery with visible battery racks, cooling equipment and a digital twin overlay
PCS · AC ↔ DCBattery racks · DCCooling + BMS
3D cutaway · drag to rotate

Follow the energy through the system.

Play the explanation or select a step. Drag the 3D cutaway to inspect the converter, battery racks and cooling equipment.

Inside battery storage
Conceptual containerised battery with visible battery racks, cooling equipment and a digital twin overlay
PCS · AC ↔ DCBattery racks · DCCooling + BMS
3D cutaway · drag to rotate
Energy directionInto storage
Step 1 of 4

Turn incoming power into stored energy.

AC electricity from the grid or an AC-coupled renewable plant passes through the power conversion system (PCS). It becomes DC power that charges the battery modules.

AC from grid / renewablesDC into battery racks

Conceptual equipment layout and illustrative operation. Equipment-specific limits and controls vary by installation.

The hardware stores energy. SPARKO decides how to use it.

Physical power flows through electrical equipment. Forecasts, models and approved instructions flow through the software layer.

Battery modules + BMS

Store energy and monitor voltage, current, temperature and local operating limits.

PCS + site equipment

Convert between AC and DC, follow permitted setpoints and preserve local protection.

SPARKO intelligence

Forecast conditions, predict asset capability and choose a feasible plan for the customer’s objective.

One asset. Several reasons to move energy.

Shift renewable generation, reduce peak purchases or participate in eligible markets. The objective changes; the physical constraints remain.

Model the decisions before you move the energy.

Bring the asset, site and objective. We will map the data boundary, twin and commercial decision flow.