AI space weather intelligenceto protect your space, air and ground assets
Augura Space turns space weather data into decision-making tools across the full operational cycle: analysis of past incidents, real-time monitoring, and forecasting of future solar storm impacts.
Rising risk, exploding data
satellites in orbit exposed to solar storms by 2030
By 2030, roughly 100,000 satellites, from low Earth orbit to geostationary, will be exposed to geomagnetic storms, radiation peaks and atmospheric drag.
geomagnetic storms per year — about two a week
Solar Cycle 25 is past its peak, but the risk does not fall with the sunspot count: recurrent geomagnetic storms driven by high-speed solar wind streams are most frequent during the declining phase.
of open data available every day
Images of the Sun, in-situ measurements in orbit, ground magnetometers: three families of public data our models assimilate continuously. The volume comes from the imagery; the value comes from combining them.
Two products, one shared data foundation
Nowcast Platform
Our free research demonstrator, open to the scientific community, to follow the state of the space environment in near real time and over the last seven days.
- Live monitoring of solar wind, particle fluxes and geomagnetic indices
- Seven days of history on every indicator
- Free and open to the scientific community
Augura Watch
Our commercial radiation monitoring solution for satellites in low Earth orbit, built for operators who need to protect their assets and document every anomaly.
- Continuous radiation monitoring for LEO satellites
- Alerts and reports for operations teams
- Anomaly diagnostics backed by space weather data
Our vision
François Ginisty, cofounder and CEO of Augura Space, presents the company's mission: giving Europe the means to see solar storms coming.
Three exposed domains
Space
Anticipate the atmospheric drag that pulls satellites out of altitude, avoid electrostatic discharge, and determine whether an onboard anomaly comes from hardware or from the radiation environment.
Air
Guarantee GNSS signal integrity for guidance and landing, protect crews and onboard electronics from radiation exposure at high altitude, and keep HF links up.
Ground
Anticipate geomagnetically induced currents that saturate high-voltage transformers, disturb railway signaling and degrade ground GNSS positioning.
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