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Deep Learning Methods for Daily Wildfire Danger Forecasting

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arxiv 2111.02736 v1 pith:GI7T4TDV submitted 2021-11-04 cs.LG cs.AIcs.CV

classification cs.LGcs.AIcs.CV
keywords dangerfirecontextdailylearningspatialdeepforecasting
verification ladder T0 review T1 audit T2 compute T3 formal

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Wildfire forecasting is of paramount importance for disaster risk reduction and environmental sustainability. We approach daily fire danger prediction as a machine learning task, using historical Earth observation data from the last decade to predict next-day's fire danger. To that end, we collect, pre-process and harmonize an open-access datacube, featuring a set of covariates that jointly affect the fire occurrence and spread, such as weather conditions, satellite-derived products, topography features and variables related to human activity. We implement a variety of Deep Learning (DL) models to capture the spatial, temporal or spatio-temporal context and compare them against a Random Forest (RF) baseline. We find that either spatial or temporal context is enough to surpass the RF, while a ConvLSTM that exploits the spatio-temporal context performs best with a test Area Under the Receiver Operating Characteristic of 0.926. Our DL-based proof-of-concept provides national-scale daily fire danger maps at a much higher spatial resolution than existing operational solutions.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. CanadaFireSat: Toward high-resolution wildfire forecasting with multiple modalities

    cs.CV 2025-06 conditional novelty 6.5 of 10

    Introduces a multi-modal 100m wildfire forecasting benchmark for Canada and shows deep learning models benefit from fusing Sentinel-2 imagery with environmental predictors.

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