Temporal discretization choices for stable boundary element methods in electromagnetic scattering problems
DOI10.1016/j.apnum.2008.12.026zbMath1211.78032OpenAlexW2069383669MaRDI QIDQ842939
Thomas Weiland, Wolfgang Ackermann, Amir Geranmayeh
Publication date: 28 September 2009
Published in: Applied Numerical Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.apnum.2008.12.026
consistent integration/interpolationslate-time stabilitytime-domain boundary integral equation methodstransient electromagnetic scattering
Diffraction, scattering (78A45) Boundary element methods applied to problems in optics and electromagnetic theory (78M15)
Related Items (5)
Cites Work
- Unnamed Item
- Unnamed Item
- Temporal discretization choices for stable boundary element methods in electromagnetic scattering problems
- Strong contractivity properties of numerical methods for ordinary and delay differential equations
- A stability analysis of a time marching scheme for the general surface electric field integral equation
- Averaging techniques for time-marching schemes for retarded potential integral equations
- A stable time domain boundary element method for the analysis of electromagnetic scattering and radiation problems.
- Quadrature Over a Pyramid or Cube of Integrands with a Singularity at a Vertex
- Time‐domain combined field integral equation using Laguerre polynomials as temporal basis functions
- Analysis of transient electromagnetic scattering from closed surfaces using a combined field integral equation
- Solution of time domain electric field Integral equation using the Laguerre polynomials
- Polar Integration for Exact Space-Time Quadrature in Time-Domain Integral Equations
This page was built for publication: Temporal discretization choices for stable boundary element methods in electromagnetic scattering problems