The Alf-Space project stems from more than a decade of scientific research conducted within LATMOS, a joint research unit of CNRS, UVSQ and Sorbonne University, in Earth observation, atmospheric sciences, small satellites and hyperspectral instrumentation.
As early as 2010, the founders identified the transformative potential of small satellite constellations for environmental monitoring from space. The emergence of New Space, technology miniaturization and higher revisit frequency opened the way to operational services based on massive environmental data exploitation.
Over time, a key realization emerged: value no longer lies solely in acquiring measurements, but in transforming heterogeneous datasets into reliable, traceable and actionable information. Industrial operators and public authorities need to identify affected assets, attribute emissions to their likely source, quantify rates, assess uncertainty and integrate results into operational and regulatory workflows.
Fugitive methane emissions have become one of the most critical climate and industrial challenges. Stronger environmental regulations, the rise of MRV frameworks and the need to reduce economic losses create demand for robust, independent and operational monitoring capabilities.
This convergence led to ORION, an environmental intelligence platform combining satellite observations, atmospheric modelling and artificial intelligence to detect, attribute and quantify anthropogenic atmospheric emissions, beginning with fugitive methane from energy and industrial infrastructure.
To progressively enhance ORION and secure strategic observation capabilities, Alf-Space is developing CLARA, a new generation of miniaturized and modular hyperspectral instruments for future missions and satellite constellations.