Physics-Informed Machine Learning Simulator for Wildfire Propagation

December 12, 2020 ยท Declared Dead ยท ๐Ÿ› AAAI Spring Symposium: MLPS

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Authors Luca Bottero, Francesco Calisto, Giovanni Graziano, Valerio Pagliarino, Martina Scauda, Sara Tiengo, Simone Azeglio arXiv ID 2012.06825 Category cs.LG: Machine Learning Citations 11 Venue AAAI Spring Symposium: MLPS Last Checked 5 months ago
Abstract
The aim of this work is to evaluate the feasibility of re-implementing some key parts of the widely used Weather Research and Forecasting WRF-SFIRE simulator by replacing its core differential equations numerical solvers with state-of-the-art physics-informed machine learning techniques to solve ODEs and PDEs, in order to transform it into a real-time simulator for wildfire spread prediction. The main programming language used is Julia, a compiled language which offers better perfomance than interpreted ones, providing Just in Time (JIT) compilation with different optimization levels. Moreover, Julia is particularly well suited for numerical computation and for the solution of complex physical models, both considering the syntax and the presence of some specific libraries such as DifferentialEquations.jl and ModellingToolkit.jl.
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