Artificial Neural Network Methods for the Solution of Second Order Boundary Value Problems

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Abstract

We present a method for solving partial differential equations using artificial neural networks and an adaptive collocation strategy. In this procedure, a coarse grid of training points is used at the initial training stages, while more points are added at later stages based on the value of the residual at a larger set of evaluation points. This method increases the robustness of the neural network approximation and can result in significant computational savings, particularly when the solution is non-smooth. Numerical results are presented for benchmark problems for scalar-valued PDEs, namely Poisson and Helmholtz equations, as well as for an inverse acoustics problem.

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Authors

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Topics & keywords

Keywords
  • Artificial neural network
  • Helmholtz equation
  • Multigrid method
  • Partial differential equation
  • Robustness (evolution)
  • Boundary value problem
  • Grid
  • Mathematical optimization
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