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Nonlinear Optimal Recovery in Hilbert Spaces

Published: May 31, 2025 | arXiv ID: 2506.00704v2

By: Daozhe Lin, Qiang Du

Potential Business Impact:

Solves hard math problems with limited information.

Business Areas:
Rehabilitation Health Care

This paper investigates solution strategies for nonlinear problems in Hilbert spaces, such as nonlinear partial differential equations (PDEs) in Sobolev spaces, when only finite measurements are available. We formulate this as a nonlinear optimal recovery problem, establishing its well-posedness and proving its convergence to the true solution as the number of measurements increases. However, the resulting formulation might not have a finite-dimensional solution in general. We thus present a sufficient condition for the finite dimensionality of the solution, applicable to problems with well-defined point evaluation measurements. To address the broader setting, we introduce a relaxed nonlinear optimal recovery and provide a detailed convergence analysis. An illustrative example is given to demonstrate that our formulations and theoretical findings offer a comprehensive framework for solving nonlinear problems in infinite-dimensional spaces with limited data.

Country of Origin
🇺🇸 United States

Page Count
39 pages

Category
Mathematics:
Numerical Analysis (Math)