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Generalised Latent Assimilation in Heterogeneous Reduced Spaces with Machine Learning Surrogate Models
by
Pain, Christopher C.
, Cheng, Sibo
, Angeli, Panagiota
, Arcucci, Rossella
, Matar, Omar K.
, Guo, Yi-Ke
, Chen, Jianhua
, Anastasiou, Charitos
in
Accuracy
/ Algorithms
/ Computational efficiency
/ Computational Mathematics and Numerical Analysis
/ Computing costs
/ Cost analysis
/ Cost function
/ Data assimilation
/ Deep learning
/ Dynamical systems
/ Earth science
/ Hydrology
/ Liquid flow
/ Machine learning
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Model reduction
/ Modelling
/ Neural networks
/ Numerical methods
/ Operators (mathematics)
/ Parameter identification
/ Reduced order models
/ Simulation
/ Theoretical
/ Two phase flow
/ Upper bounds
2023
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Generalised Latent Assimilation in Heterogeneous Reduced Spaces with Machine Learning Surrogate Models
by
Pain, Christopher C.
, Cheng, Sibo
, Angeli, Panagiota
, Arcucci, Rossella
, Matar, Omar K.
, Guo, Yi-Ke
, Chen, Jianhua
, Anastasiou, Charitos
in
Accuracy
/ Algorithms
/ Computational efficiency
/ Computational Mathematics and Numerical Analysis
/ Computing costs
/ Cost analysis
/ Cost function
/ Data assimilation
/ Deep learning
/ Dynamical systems
/ Earth science
/ Hydrology
/ Liquid flow
/ Machine learning
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Model reduction
/ Modelling
/ Neural networks
/ Numerical methods
/ Operators (mathematics)
/ Parameter identification
/ Reduced order models
/ Simulation
/ Theoretical
/ Two phase flow
/ Upper bounds
2023
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Generalised Latent Assimilation in Heterogeneous Reduced Spaces with Machine Learning Surrogate Models
by
Pain, Christopher C.
, Cheng, Sibo
, Angeli, Panagiota
, Arcucci, Rossella
, Matar, Omar K.
, Guo, Yi-Ke
, Chen, Jianhua
, Anastasiou, Charitos
in
Accuracy
/ Algorithms
/ Computational efficiency
/ Computational Mathematics and Numerical Analysis
/ Computing costs
/ Cost analysis
/ Cost function
/ Data assimilation
/ Deep learning
/ Dynamical systems
/ Earth science
/ Hydrology
/ Liquid flow
/ Machine learning
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Model reduction
/ Modelling
/ Neural networks
/ Numerical methods
/ Operators (mathematics)
/ Parameter identification
/ Reduced order models
/ Simulation
/ Theoretical
/ Two phase flow
/ Upper bounds
2023
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Generalised Latent Assimilation in Heterogeneous Reduced Spaces with Machine Learning Surrogate Models
Journal Article
Generalised Latent Assimilation in Heterogeneous Reduced Spaces with Machine Learning Surrogate Models
2023
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Overview
Reduced-order modelling and low-dimensional surrogate models generated using machine learning algorithms have been widely applied in high-dimensional dynamical systems to improve the algorithmic efficiency. In this paper, we develop a system which combines reduced-order surrogate models with a novel data assimilation (DA) technique used to incorporate real-time observations from different physical spaces. We make use of local smooth surrogate functions which link the space of encoded system variables and the one of current observations to perform variational DA with a low computational cost. The new system, named generalised latent assimilation can benefit both the efficiency provided by the reduced-order modelling and the accuracy of data assimilation. A theoretical analysis of the difference between surrogate and original assimilation cost function is also provided in this paper where an upper bound, depending on the size of the local training set, is given. The new approach is tested on a high-dimensional (CFD) application of a two-phase liquid flow with non-linear observation operators that current Latent Assimilation methods can not handle. Numerical results demonstrate that the proposed assimilation approach can significantly improve the reconstruction and prediction accuracy of the deep learning surrogate model which is nearly 1000 times faster than the CFD simulation.
Publisher
Springer US,Springer Nature B.V
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