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Updated: Dec 23, 2025

Surrogate Model Development for Digital Experiments in Welding
Published on: March 28, 2025
Improved surrogates in inertial confinement fusion with manifold and cycle consistencies
Rushil Anirudh1, Jayaraman J Thiagarajan2, Peer-Timo Bremer2,3
1Center for Applied Scientific Computing (CASC), Lawrence Livermore National Laboratory, Livermore, CA 94550; anirudh1@llnl.gov.
Abstract:
Neural networks have become the method of choice in surrogate modeling because of their ability to characterize arbitrary, high-dimensional functions in a data-driven fashion. This paper advocates for the training of surrogates that are 1) consistent with the physical manifold, resulting in physically meaningful predictions, and 2) cyclically consistent with a jointly trained inverse model; i.e., backmapping predictions through the inverse results in the original input parameters. We find that these two consistencies lead to surrogates that are superior in terms of predictive performance, are more resilient to sampling artifacts, and tend to be more data efficient. Using inertial confinement fusion (ICF) as a test-bed problem, we model a one-dimensional semianalytic numerical simulator and demonstrate the effectiveness of our approach.
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