POSTER SESSION 1

15:30–17:30, Monday, September 14

Poster Session | 1 | 2 | 3 | 4 | Schedule at a Glance

ABSTRACT 1208 | POSTER 205

ISOLATING THE IN-SITU CONTRIBUTION TO OCEAN COLOUR VICARIOUS CALIBRATION

System Vicarious Calibration (SVC) is essential to meeting the radiometric uncertainty requirements of ocean colour satellite missions. As multiple sources of high-quality in-situ radiometric data capable of supporting primary SVC become available, the ability to reconcile gain factors derived from different sources becomes increasingly important. Differences in the atmospheric correction algorithms used across operational processing chains represent a barrier to direct comparison of platform-derived gain factors.

This work derives SVC gain factors for MODIS Aqua using in-water radiometry from the BOUSSOLE buoy, with both its multispectral and hyperspectral data records, and from MOBY, with the MarONet buoy, operated in the eastern Indian Ocean, included where data permit. Matchups are identified within a one-hour temporal window and subject to rigorous quality filtering, yielding approximately 300 high-quality matchups for the BOUSSOLE multi-spectral record spanning 2003 to 2016. A single atmospheric correction algorithm, based on Antoine and Morel (1999), is applied consistently across all platforms to propagate in-water radiometry to top-of-atmosphere radiance, following Franz et al. (2007) for pixel selection and averaging. The use of consistent atmospheric correction means that methodological differences between processing chains do not contribute to inter-platform gain differences but are isolated to in-water radiometry and atmospheric conditions at each platform.

The per-platform gains are applied to generate Level 2 retrievals of remote sensing reflectance and chlorophyll concentration. The processing pipeline is applicable to Sentinel-3 OLCI and extension to this sensor is planned. Results are discussed with implications for reconciling SVC gain factors derived from a multi-site network.

Joshua Schofield*, National Physical Laboratory & Cranfield University, [email protected]

David Antoine, Remote Sensing and Satellite Research Group, School of Earth and Planetary Sciences, Curtin University, Perth, Australia, [email protected], https://orcid.org/0000-0002-9082-2395

Agnieszka Bialek, National Physical Laboratory, Teddington, United Kingdom, [email protected], https://orcid.org/0000-0003-4502-2687

Poster Session | 1 | 2 | 3 | 4Schedule at a Glance

Keep up to date

Sign up to receive email updates to be sure to catch all the meeting news.

Questions?

Contact Jenny Ramarui,
Conference Coordinator,
at [email protected]
or (1) 301-251-7708

Translate »