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Research PaperResearchia:202610.03009

Kolmogorov-Arnold Networks for Free-Boundary Partial Differential Equations

Tan Phuong Dong Le

Abstract

We study free-boundary problems within a physics-informed framework using Kolmogorov-Arnold network (KAN) approximations. The proposed approach incorporates obstacle constraints, partial differential equation (PDE) inequalities, complementarity conditions, and boundary conditions through residual-based loss functions. We consider a linear elliptic obstacle problem, a nonlinear $p$-Laplacian obstacle problem, and a time-dependent one-phase Stefan problem. The proposed KAN solver is compared with ...

Submitted: October 3, 2026Subjects: Mathematics; Mathematics

Description / Details

We study free-boundary problems within a physics-informed framework using Kolmogorov-Arnold network (KAN) approximations. The proposed approach incorporates obstacle constraints, partial differential equation (PDE) inequalities, complementarity conditions, and boundary conditions through residual-based loss functions. We consider a linear elliptic obstacle problem, a nonlinear pp-Laplacian obstacle problem, and a time-dependent one-phase Stefan problem. The proposed KAN solver is compared with physics-informed neural network (PINN) and residual-network baselines. Numerical experiments show that KANs achieve low relative L2L^2 and L∞L^\infty errors while accurately resolving contact regions and moving interfaces. The results indicate that KAN representations provide an effective alternative for solving free-boundary PDEs.


Source: arXiv:2610.02084v1 - http://arxiv.org/abs/2610.02084v1 PDF: https://arxiv.org/pdf/2610.02084v1 Original Link: http://arxiv.org/abs/2610.02084v1

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Date:
Oct 3, 2026
Topic:
Mathematics
Area:
Mathematics
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