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  • Swarm-Aurora

    Swarm-Aurora, a web-based tool, provides access to quick-look summary data for an array of ground-based instruments and Swarm in situ measurements, enabling researchers to identify events of interest.

  • Multi-Approach Gravity Field models from Swarm GPS data

    Multi-Approach Gravity Field models from Swarm GPS data project aims to provide quality gravity field models from Swarm data that constitute an alternative and independent source of gravimetric data.

  • Auroral Electrojet and auroral Boundaries estimated from Swarm observations

    In the Swarm-AEBS project, a set of new Swarm data products that characterise the auroral electrojets and auroral oval boundaries will be derived from Swarm magnetic field measurements.

  • Average Magnetic field and Polar current System model

    The AMPS project outcome is a new climatological model of polar ionospheric currents, based on magnetic field measurements from the CHAMP and Swarm satellites.

  • LTDP ALTS: ATSR Long Term Stability Project

    The LTDP ALTS: ATSR Long Term Stability Project is designed to explore new and innovative ways of enhancing the (A)ATSR data set.

  • SEOM CAWA

    The Advanced Clouds, Aerosols and WAter vapour products for Sentinel-3/OLCI project aims to develop and improve the advanced atmospheric retrieval algorithms developed for MERIS and OLCI instruments.

  • ALGOM

    The ALGOM: GOMOS Level 2 Algorithm Evolution Studies project consists of different Level 2 studies aimed at the improvement of the quality of the GOMOS products.

  • Odin-SMR

    ESA/SPPA took the initiative to support the reprocessing of all Odin-SMR measurements in order to create a fully consistent and homogeneous dataset of stratospheric species profiles.

  • SCIRoCCo

    The SCIRoCCo project is an interdisciplinary cooperation of scatterometry experts aimed at promoting the continuing exploitation of ESA's unique 20 years' worth of ERS Scatterometer data.

  • QA4EO-ATLAS

    A pulsed Tuneable Laser system for the characterisation of Spectrometers

  • QA4EO-RUT

    The ‘RUT' tool project has the overall objective is to define a generic software implementable methodology for assessing the radiometric uncertainty per pixel of the TOA radiance/reflectance products.

  • FRM4SOC: Fiducial Reference Measurements for Satellite Ocean Colour

    The FRM4SOC project, with funding from ESA, has been structured to provide support for evaluating and improving the state of the art in ocean colour validation .

  • FRM4DOAS: Fiducial Reference Measurements for Ground-Based DOAS Air-Quality Obse

    (FRM) are a suite of independent, fully characterized, and traceable ground measurements that follow the guidelines outlined by the GEO/CEOS Quality Assurance framework for Earth Observation.

  • FRM4GHG: Reference Measurements for Ground-Based FTIR Greenhouse Gas Observation

    Fiducial Reference Measurements for Ground-Based Infrared Greenhouse Gas Observations (FRM4GHG) is a European Space Agency (ESA) funded project.

  • Pandonia FRM: Fiducial Reference Measurements for Ground-Based Direct-Sun Air-Qu

    The Pandonia Global Network (PGN) is a collaborative effort between ESA and NASA .

  • ESA satellites and instruments calibration landing page

    ESA satellites and instruments calibration landing page.

  • Aeolus DISC

    The Aeolus DISC is the core element in ESA's data quality framework for the Aeolus mission, comprised of an international expert consortium to study and improve the data quality of Aeolus products.

  • Swarm Outflow

    The Swarm+ Coupling High-Low Atmosphere Interactions: Ion Outflow ("Swarm+ Outflow") project, which began in May 2019, centres on using Swarm spacecraft to tackle unanswered questions around non-thermal processes that lead to ion outflow.

  • VERA

    VERtical coupling in Earth's Atmosphere at mid and high latitudes (VERA) is a project in response to the ESA ITT "Swarm+ Coupling: High-Low Atmosphere Interactions" with the duration of 16 months.

  • SIEMIC

    Swarm Investigation of the Energetics of Magnetosphere-Ionosphere Coupling (SIEMIC) project is a Living Planet Fellowship research project to discover how much energy flows from the magnetosphere to the ionosphere at which scales into each hemisphere.