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Physics-Informed Koopman Network

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arxiv 2211.09419 v1 pith:HQC7B4CB submitted 2022-11-17 cs.LG math.APmath.DSmath.OA

classification cs.LGmath.APmath.DSmath.OA
keywords koopmantrainingdata-setsgreatlargenetworksneuralphysics-informed
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Koopman operator theory is receiving increased attention due to its promise to linearize nonlinear dynamics. Neural networks that are developed to represent Koopman operators have shown great success thanks to their ability to approximate arbitrarily complex functions. However, despite their great potential, they typically require large training data-sets either from measurements of a real system or from high-fidelity simulations. In this work, we propose a novel architecture inspired by physics-informed neural networks, which leverage automatic differentiation to impose the underlying physical laws via soft penalty constraints during model training. We demonstrate that it not only reduces the need of large training data-sets, but also maintains high effectiveness in approximating Koopman eigenfunctions.

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