Paper
in
Workshop: EarthVision: Large Scale Computer Vision for Remote Sensing Imagery
SSL4Eco: A Global Seasonal Dataset for Geospatial Foundation Models in Ecology
Elena Plekhanova · Damien Robert · Johannes Dollinger · Emilia Arens · Philipp Brun · Jan D. Wegner · Niklaus E. Zimmermann
With the exacerbation of the biodiversity and climate crises, macroecological pursuits such as global biodiversity mapping become more urgent. Remote sensing offers a wealth of Earth observation data for ecological studies, but the scarcity of labeled datasets remains a major challenge. Recently, self-supervised learning has enabled learning representations from unlabeled data, triggering the development of pretrained geospatial models with generalizable features. However, these models are often trained on datasets biased toward areas of high human activity, leaving entire ecological regions underrepresented. Additionally, while some datasets attempt to address seasonality through multi-date imagery, they typically follow calendar seasons rather than local phenological cycles. To better capture vegetation seasonality at a global scale, we propose a simple phenology-informed sampling strategy and introduce SSL4Eco, a multi-date Sentinel-2 dataset built on this approach, on which we train an existing model with a season-contrastive objective. We compare representations learned from SSL4Eco against other datasets on diverse ecological downstream tasks and demonstrate that our straightforward sampling method consistently improves representation quality, highlighting the importance of dataset construction. The model pretrained on SSL4Eco outperforms the state of the art on 7 out of 8 downstream tasks spanning (multi-label) classification and regression. We release our code, data, and model weights to support both macroecological and computer vision research.