The real battery. Its predictive counterpart.

SPARKO turns telemetry into a living model of usable energy, losses, temperature, power capability and risk, then tests every commercial plan before dispatch.

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

Watch physical measurements become a predictive model.

Measure, estimate, predict and preflight. Each step connects to the same physical battery you can inspect in the 3D cutaway.

From asset to digital twin
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
Illustrative inputsV · A · °C
Step 1 of 4

Start with the physical battery.

Voltage, current, temperature and equipment status come from site telemetry. The twin reads the actual operating condition rather than assuming nameplate capability.

BMS + PCS + site metersTimestamped asset telemetry

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

Interactive twin lab

Change the objective. Watch the operating envelope respond.

A buyer preserves different headroom from a renewable seller or merchant. The physics stays constant; the best use changes.

Customer objective
Risk preference
DIGITAL TWIN / SERVER SYNC
46%OPENING SOC
Projected closing SoC44%
Equivalent cycles1.14
Plan confidence93%

Illustrative control simulation. A production twin is calibrated with OEM curves, commissioning tests and live site telemetry.

Replace the optimisation EMS

One intelligence layer above equipment control.

SPARKO replaces duplicated supervisory optimisation, scheduling and workflow. Equipment safety and real-time power control remain where they belong.

Supervisory intelligence

SPARKO digital twin + optimiser

Forecast · state estimation · future envelope · objective optimisation · schedule · approval · reconciliation

Telemetry up approved setpoints down
Retained equipment control

BMS · PCS · protection · emergency controls

Cell safety · contactors · conversion · protection logic · hard limits · local fallback

Monitoring is only the beginning

Now, next, why and proof.

The twin continuously recalibrates the operating envelope from site telemetry and equipment behaviour.

Now

State estimation

SoC, SoH, temperature, availability, usable energy and live constraints.

Next

Predictive envelope

Future power capability, losses, terminal SoC, thermal derating and risk.

Why

Customer context

The same BESS behaves differently for cost, delivery and merchant-value objectives.

Proof

Preflight + replay

Test the plan before dispatch, surface exceptions and compare instruction with outcome.

System comparison

From telemetry console to decision system.

CapabilityConventional supervisory EMSSPARKO twin + optimiser
Live monitoringYesYes
Equipment safety and protectionVia BMS / PCSVia BMS / PCS
Future feasible envelopeLimited / rules basedPredictive and calibrated
Buyer, seller, merchant objectivesUsually custom logicNative objective models
Market + asset co-optimisationOften separateOne decision problem
Preflight and constraint explanationLimitedBuilt into workflow
Settlement and P&L proofSeparate reportingDecision-to-outcome trail
White-label OEM deploymentProject dependentDesigned as a platform layer

Give every BESS a decision-grade digital twin.

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