Accelerating High-Fidelity Fixed Point Schemes with On-the-fly Reduced Order Modeling

Fuente: arXiv
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Main Authors: Luneau, Philippe-André, Deteix, Jean
Format: Preprint
Published: 2025
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author Luneau, Philippe-André
Deteix, Jean
author_facet Luneau, Philippe-André
Deteix, Jean
contents A general method for accelerating fixed point schemes for problems related to partial differential equations is presented in this article. The speedup is obtained by training a reduced-order model on-the-fly, removing the need to do an offline training phase and any dependence to a precomputed reduced basis (e.g. a fixed geometry or mesh). The surrogate model can adapt itself along the iterations because of an error criterion based on error propagation, ensuring the high fidelity of the converged result. Convergence results are given for a general class of fixed point problems with complex dependence structures between multiple auxiliary linear systems. The proposed algorithm is applied to the solution of a system of coupled partial differential equations. The speedups obtained are significant, and the output of the method can be considered high-fidelity when compared to the reference solution.
format Preprint
id arxiv_https___arxiv_org_abs_2509_22846
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Accelerating High-Fidelity Fixed Point Schemes with On-the-fly Reduced Order Modeling
Luneau, Philippe-André
Deteix, Jean
Numerical Analysis
65N22, 65H10, 65Y20, 65F55, 76M10
A general method for accelerating fixed point schemes for problems related to partial differential equations is presented in this article. The speedup is obtained by training a reduced-order model on-the-fly, removing the need to do an offline training phase and any dependence to a precomputed reduced basis (e.g. a fixed geometry or mesh). The surrogate model can adapt itself along the iterations because of an error criterion based on error propagation, ensuring the high fidelity of the converged result. Convergence results are given for a general class of fixed point problems with complex dependence structures between multiple auxiliary linear systems. The proposed algorithm is applied to the solution of a system of coupled partial differential equations. The speedups obtained are significant, and the output of the method can be considered high-fidelity when compared to the reference solution.
title Accelerating High-Fidelity Fixed Point Schemes with On-the-fly Reduced Order Modeling
topic Numerical Analysis
65N22, 65H10, 65Y20, 65F55, 76M10
url https://arxiv.org/abs/2509.22846