背景(考古学)
杠杆(统计)
环境科学
气候变化
环境资源管理
计算机科学
气候学
气象学
地理
人工智能
地质学
海洋学
考古
作者
Spyros Kondylatos,Ioannis Prapas,Michele Ronco,Ioannis Papoutsis,Gustau Camps‐Valls,María Piles,Miguel‐Ángel Fernández‐Torres,Nuno Carvalhais
摘要
Abstract Climate change exacerbates the occurence of extreme droughts and heatwaves, increasing the frequency and intensity of large wildfires across the globe. Forecasting wildfire danger and uncovering the drivers behind fire events become central for understanding relevant climate‐land surface feedback and aiding wildfire management. In this work, we leverage Deep Learning (DL) to predict the next day's wildfire danger in a fire‐prone part of the Eastern Mediterranean and explainable Artificial Intelligence (xAI) to diagnose model attributions. We implement DL models that capture the temporal and spatio‐temporal context, generalize well for extreme wildfires, and demonstrate improved performance over the traditional Fire Weather Index. Leveraging xAI, we identify the substantial contribution of wetness‐related variables and unveil the temporal focus of the models. The variability of the contribution of the input variables across wildfire events hints into different wildfire mechanisms. The presented methodology paves the way to more robust, accurate, and trustworthy data‐driven anticipation of wildfires.
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