Skip to main navigation Skip to search Skip to main content

Combining data assimilation and machine learning to emulate a dynamical model from sparse and noisy observations: A case study with the Lorenz 96 model

  • Julien Brajard
  • , Alberto Carrassi
  • , Marc Bocquet
  • , Laurent Bertino

Research output: Contribution to journalArticlepeer-review

Abstract

A novel method, based on the combination of data assimilation and machine learning is introduced. The new hybrid approach is designed for a two-fold scope: (i) emulating hidden, possibly chaotic, dynamics and (ii) predicting their future states. The method consists in applying iteratively a data assimilation step, here an ensemble Kalman filter, and a neural network. Data assimilation is used to optimally combine a surrogate model with sparse noisy data. The output analysis is spatially complete and is used as a training set by the neural network to update the surrogate model. The two steps are then repeated iteratively. Numerical experiments have been carried out using the chaotic 40-variables Lorenz 96 model, proving both convergence and statistical skill of the proposed hybrid approach. The surrogate model shows short-term forecast skill up to two Lyapunov times, the retrieval of positive Lyapunov exponents as well as the more energetic frequencies of the power density spectrum. The sensitivity of the method to critical setup parameters is also presented: the forecast skill decreases smoothly with increased observational noise but drops abruptly if less than half of the model domain is observed. The successful synergy between data assimilation and machine learning, proven here with a low-dimensional system, encourages further investigation of such hybrids with more sophisticated dynamics.

Original languageEnglish
Article number101171
JournalJournal of Computational Science
Volume44
DOIs
Publication statusPublished - 1 Jul 2020
Externally publishedYes

Keywords

  • Data assimilation
  • Dynamical model
  • Emulator
  • Machine learning
  • Observations

Fingerprint

Dive into the research topics of 'Combining data assimilation and machine learning to emulate a dynamical model from sparse and noisy observations: A case study with the Lorenz 96 model'. Together they form a unique fingerprint.

Cite this