Operator Learning: Algorithms and Analysis
Kovachki, Nikola B., Lanthaler, Samuel, Stuart, Andrew M.
–arXiv.org Artificial Intelligence
Operator learning refers to the application of ideas from machine learning to approximate (typically nonlinear) operators mapping between Banach spaces of functions. Such operators often arise from physical models expressed in terms of partial differential equations (PDEs). In this context, such approximate operators hold great potential as efficient surrogate models to complement traditional numerical methods in many-query tasks. Being data-driven, they also enable model discovery when a mathematical description in terms of a PDE is not available. This review focuses primarily on neural operators, built on the success of deep neural networks in the approximation of functions defined on finite dimensional Euclidean spaces. Empirically, neural operators have shown success in a variety of applications, but our theoretical understanding remains incomplete.
arXiv.org Artificial Intelligence
Feb-23-2024
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- North America > United States (0.28)
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- Overview (1.00)
- Research Report > New Finding (0.46)
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