Fully Automated Adaptive Parameter Selection for 3-D High-order Nyström Boundary Integral Equation Methods

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Autori principali: Aslanyan, Davit, Sideris, Constantine
Natura: Preprint
Pubblicazione: 2026
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author Aslanyan, Davit
Sideris, Constantine
author_facet Aslanyan, Davit
Sideris, Constantine
contents We present an adaptive Chebyshev-based Boundary Integral Equation (CBIE) solver for electromagnetic scattering from smooth perfect electric conductor (PEC) objects. The proposed approach eliminates manual parameter tuning by introducing (i) a unified adaptive quadrature strategy for automatic selection of the near-singular interaction distance and (ii) an adaptive computation of all self- and near-singular precomputation integrals to a prescribed accuracy using Gauss-Kronrod (h-adaptive) or Clenshaw-Curtis (p-adaptive) rules and singularity-resolving changes of variables. Both h-adaptive and p-adaptive schemes are explored within this framework, ensuring high-order accuracy and robustness across a broad range of geometries without loss of efficiency. Numerical results for canonical and complex CAD geometries demonstrate that the adaptive solver achieves accuracy and convergence rates comparable to optimally tuned fixed-grid CBIE implementations, while offering automation and scalability to electrically large, geometrically complex problems.
format Preprint
id arxiv_https___arxiv_org_abs_2602_03178
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fully Automated Adaptive Parameter Selection for 3-D High-order Nyström Boundary Integral Equation Methods
Aslanyan, Davit
Sideris, Constantine
Numerical Analysis
Computational Physics
We present an adaptive Chebyshev-based Boundary Integral Equation (CBIE) solver for electromagnetic scattering from smooth perfect electric conductor (PEC) objects. The proposed approach eliminates manual parameter tuning by introducing (i) a unified adaptive quadrature strategy for automatic selection of the near-singular interaction distance and (ii) an adaptive computation of all self- and near-singular precomputation integrals to a prescribed accuracy using Gauss-Kronrod (h-adaptive) or Clenshaw-Curtis (p-adaptive) rules and singularity-resolving changes of variables. Both h-adaptive and p-adaptive schemes are explored within this framework, ensuring high-order accuracy and robustness across a broad range of geometries without loss of efficiency. Numerical results for canonical and complex CAD geometries demonstrate that the adaptive solver achieves accuracy and convergence rates comparable to optimally tuned fixed-grid CBIE implementations, while offering automation and scalability to electrically large, geometrically complex problems.
title Fully Automated Adaptive Parameter Selection for 3-D High-order Nyström Boundary Integral Equation Methods
topic Numerical Analysis
Computational Physics
url https://arxiv.org/abs/2602.03178