Production · Energy · Environment

More revenue from the plant you already own.

Aeterna Automation pairs neural-network smart instruments (intelligent instruments) with advanced process control — so your plant produces more, responsible. Live in weeks.

+1–3%
production · t/h
3–8%
energy · kWh / t
3–8%
CO₂ · kg / t
PLANT_LOAD · % OF OVERLOAD LIMIT APC LIVE
OVERLOAD LIMIT APC ENGAGED → DISTRIBUTION μ MANUAL μ APC ↑ σ ↓ TIGHTER
Manual control — low mean, wide spread; productivity left on the table Aeterna APC — higher mean held tight at the limit, maximum stable output
Field notes · Where the losses hide

Where is your loss?

Every shift, mineral processing plants leave tonnes and metal on the table — not because anyone is doing the wrong thing, but because the disturbances are invisible in real time. These short reads name the losses, and what a smart instrument plus advanced process control does about each one.

Product · five modules, one closed loop
Faster deployment

The APC gap is integration — not the math.

Most APC projects don’t stall on modelling; they stall at the integration with the plant’s DCS, SCADA, PLC, and historian stack. Our team has spent years inside those systems — OPC-UA bridges, PI historians, vendor-specific tag conventions, OT-network constraints — so the path from kick-off to running setpoints in production is measured in weeks, not quarters.

01 SCADA bridge & tag map

OPC-UA / DCS / historian wired up with our pre-built bridge. Plant tags mapped to the model, with the OT team in the loop. No new sensors.

02 Tune & validate

Advanced instruments and MPC tuned and validated against your historical and live data, reviewed against soft-sensor benchmarks and walked through with your metallurgists and process engineers.

03 Live on production

MPC online as operator advice first, then closed-loop on your terms. Operators stay in command; Aeterna holds the limit.

What Aeterna delivers

Three outcomes, one closed loop.

Comminution

higher throughput · consistent sizing

SAG, ball mill, pebble crusher, and classification coordinated as one optimisation problem. The circuit holds the true bottleneck instead of an operator’s safety margin, and P80 stays on target as ore hardness drifts.

Enrichment

better recovery · consistent grade

Live signals from the froth and grade-aware control of reagent, air, and pulp level — recovery held against ore drift, grade tightened where it pays. The plant stops chasing the assay and starts leading it.

Responsibility

efficient operation · better environment

Lower energy per tonne, tighter water-loop control, and less rework all compound into a smaller footprint per gram of metal. Production grows; the impact does not.

Worked example · live gold price

What the circuit is worth on a gold operation.

A 5 Mt/a gold plant, valued at the current spot gold price. The figure is the incremental revenue from the modelled throughput uplift — lower energy per tonne and recovery gains are additional upside.

Scenario assumptions
Ore milled5.0 Mt / yr
Head grade1.0 g/t Au
Recovery90%
Gold output (base)~144,700 oz / yr
Throughput uplift (MPC)1 – 3%
Spot gold price
fetching live price…
Estimated annual benefit
incremental revenue from a 1–3% throughput uplift, at today's spot price
Added gold output
Gold price (live)
Base production144,700 oz/yr
Get a validated estimate for your circuit

Gross incremental gold revenue at the live spot price; excludes operating cost per tonne and additional upside from energy and recovery gains. A site study produces a net, plant-specific figure.

7-Day Free Trial

See your revenue gap — in 7 days, at no cost.

Get 7 days of full-licence access to explore the software. Provide 60–90 days of process data and we build an initial process model, simulate how Model Predictive Control would engage on your operation, and show you what it would improve — before any commitment.

Talk to us directly.

Tell us about your operation and we'll give you a straight answer — no pressure, just a conversation.

-->