Combined inversion algorithm retrieving surface reflectance and aerosol/cloud properties from satellite and drone imagery

CISAR (Combined Inversion of Surface and AeRosol) is an advanced mathematical algorithm developed by Rayference that jointly retrieves surface reflectance, aerosol optical thickness, and cloud single-scattering properties from observations acquired by passive space-based and drone-borne imagers operating in the visible and near-infrared.
Built on the inversion of the FASTRE fast radiative transfer model using an Optimal Estimation framework, it provides pixel-level uncertainty propagation without requiring pre-computed look-up tables or an external cloud mask. The algorithm is sensor-agnostic — applicable to any passive optical sensor acquiring at least one observation every 1–2 days — and has been operationally applied to Sentinel-3A/SLSTR and PROBA-V data within ESA projects (Aerosol_cci+, PV-LAC ATMO).
Key capabilities:
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Verwerking
Insight Generation

Rayference
Rayference is an innovative SME specialising in Earth observation and radiative transfer modelling, offering technical and scientific expertise in both 1D and 3D approaches. Its flagship products include CISAR, an advanced inversion algorithm, and Eradiate, an open-source 3D radiative transfer model, used for synthetic scene generation and retrieval of essential climate variables from satellite data.
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Teamgrootte
Converts analysis into context-rich, actionable insights.
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System Integration
Embeds data and insights into existing systems and workflows.