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Domain Decomposition-based coupling of Operator Inference reduced order models via the Schwarz alternating method

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arxiv 2409.01433 v3 pith:I4AOJTYO submitted 2024-09-02 math.NA cs.LGcs.NAmath-phmath.MP

classification math.NAcs.LGcs.NAmath-phmath.MP
keywords couplingmethodmodelsopinfsubdomain-localalternatingorderroms
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This paper presents and evaluates an approach for coupling together subdomain-local reduced order models (ROMs) constructed via non-intrusive operator inference (OpInf) with each other and with subdomain-local full order models (FOMs), following a domain decomposition of the spatial geometry on which a given partial differential equation (PDE) is posed. Joining subdomain-local models is accomplished using the overlapping Schwarz alternating method, a minimally-intrusive multiscale coupling technique that works by transforming a monolithic problem into a sequence of subdomain-local problems, which communicate through transmission boundary conditions imposed on the subdomain interfaces. After formulating the overlapping Schwarz alternating method for OpInf ROMs, termed OpInf-Schwarz, we evaluate the method's accuracy and efficiency on several test cases involving the heat equation in two spatial dimensions. We demonstrate that the method is capable of coupling together arbitrary combinations of OpInf ROMs and FOMs, and that speed-ups over a monolithic FOM are possible when performing OpInf ROM coupling.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Non-intrusive reduced-order modeling for dynamical systems with spatially localized features

    math.DS 2025-01 conditional novelty 6.0 of 10

    A domain-decomposed coupling of Operator Inference and sparse full-order model inference that predicts localized transport dynamics beyond training data using a new Gershgorin-based stability regularization.

  2. Hybrid coupling with operator inference and the overlapping Schwarz alternating method

    math.NA 2025-11 conditional novelty 5.0 of 10

    Overlapping Schwarz iteration can glue operator-inference ROMs to each other and to full-order finite-element models for 3D nonlinear solid dynamics, with online speedups up to 106x.

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