Provence Hybrid Plant
A 120 MW hybrid plant: six wind turbines, four PV inverter blocks, two battery racks, the main 33/225 kV transformer, the grid connection point and a meteorological mast.

What the platform models here
Each family has a behavioural model that the live simulator and the proving twin share, so a dry-run behaves the way the plant does.
- Wind turbines
- PV inverter blocks
- Battery racks
- Power transformer
- Grid connection
- Met mast
A gust front arrives faster than a phone tree
Sustained 22 m/s wind across the field puts every turbine near rated power under high mechanical load. The protective action — ramp the field down — has to be right, agreed and applied within minutes, and it has to be defensible afterwards.
High-Wind Curtailment Ramp-Down
high-wind-curtailment
Protect the wind field from mechanical overload during a high-wind gust front by ramping turbines to 30 % and confirming with the shift supervisor.
- 01Decision: wind ≥ 20 m/s?
- 02Curtail WTG-01…06 → 30 %
- 03Shift-supervisor confirmation
- 04Notify control room
C4 · operational action
High-Wind Gust Front
Sustained 22 m/s wind across the field — near-rated power with high mechanical load.
| Assertion | Baseline | With procedure | |
|---|---|---|---|
| Wind-field active power ≤ 1.3 MW | 3.60 MW | 1.08 MW | pass |
| Rotor speed ≤ 12 rpm after mitigation | 15.0 rpm | 4.50 rpm | pass |
Six commands intercepted on the twin. This is the loop the copilot drives end to end in the hero screenshot.
What the control room sees


Run this against renewable generation you actually operate.
We will model your equipment, wire your tags and dry-run one of your procedures on the call.