Forecasts that sit next to your live data.

Mesoscale irradiance forecasts blended with on-site pyranometer, reference-cell, and module-temperature data — for 0–72 h power-output forecasts your dispatch desk can trade on.

The problem

Most operators get irradiance forecasts from a third party in CSV or via a separate portal, then manually adjust for module temperature in a spreadsheet. The model isn't tuned to the site, the on-site pyranometers that would calibrate it publish to a different system, and nobody recomputes the bias correction more than once a quarter. Imbalance penalties are the result.

How SolarTwin solves it

  • Mesoscale forecast ingest — ECMWF (HRES & ENS), CAMS, DWD ICON, and satellite-derived nowcasts (Meteosat / GOES) for 0–6 hour horizons.
  • Site-tuned bias correction using your last 30–90 days of measured vs. forecast irradiance. Recomputed continuously, not quarterly.
  • Pyranometer & reference-cell fusion — on-site observations weighted into the short-term horizon (0–6 h) where they outperform the mesoscale.
  • Power-output forecasts derived from your plant's IV characteristic, module temperature coefficients, and live inverter availability — so a tripped inverter doesn't poison the portfolio number.
  • Curtailment-aware — known clipping limits and dispatch instructions roll into the forecast automatically.
  • Forecast vs. actual scorecards updated every day, so you can prove the value to the trading and treasury teams who fund the platform.

How it works

  1. SolarTwin pulls forecast grids (NetCDF / GRIB2) from the configured providers on each model run.
  2. Irradiance is interpolated to each tracker's plane of array and bias-corrected against the site's measurement history.
  3. Power output is derived per inverter using the plant model, then aggregated to plant and portfolio level — accounting for live availability and curtailment.
  4. Outputs land in the same dashboards as live SCADA, in the same API, and in the same exports.

What you can do with it

  • Submit nominations and intra-day re-nominations from the same screen you operate the plant in.
  • Plan maintenance windows around forecasted low-irradiance periods — without juggling two systems.
  • Defend forecast performance to the trading desk with daily MAE/RMSE scorecards.

Specs

  • Sources: ECMWF HRES & ENS, CAMS, DWD ICON, satellite nowcasts (add more on request).
  • Horizons: 0–72 h core; 0–10 days as supporting context.
  • Granularity: per inverter, per plant, per portfolio.
  • Bias correction: rolling 30/60/90 day window, automatic re-fit.
  • Available via dashboard, REST API, and scheduled CSV export.

See it with your own plant

Send us a month of measured irradiance from one plant. We'll backtest a SolarTwin forecast against it and show the result.

Book a walkthrough