Efficient and kernel-independent Evaluation of Singular Integrals in Volume Integral Equations

Conference Paper (2021)
Author(s)

Cedric Münger (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Kristof Cools (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Research Group
Numerical Analysis
DOI related publication
https://doi.org/10.1109/COMCAS52219.2021.9629074 Final published version
More Info
expand_more
Publication Year
2021
Language
English
Research Group
Numerical Analysis
Article number
9629074
Pages (from-to)
188-192
ISBN (print)
978-1-6654-1147-9
ISBN (electronic)
978-1-6654-3557-4
Event
2021 IEEE International Conference on Microwaves, Antennas, Communications and Electronic Systems (COMCAS) (2021-11-01 - 2021-11-03), Tel Aviv, Israel
Downloads counter
175

Abstract

We present a method for the numerical evaluation of 6D singular integrals appearing in Volume Integral Equations. It is an extension of the Sauter-Schwab/Taylor-Duffy strategy for singular triangle-triangle interaction integrals to singular tetrahedron-tetrahedron interaction integrals. This general approach allows to use different kinds of kernel and basis functions. It also works on curvilinear domains. Our approach is based on relative coordinates and splitting the integration domain into subdomains for which quadrature rules can be constructed. Further, we show how to build these tensor-product quadrature rules economically using quadrature rules defined over 2D, 3D and 4D simplices. Compared to the existing approach where the integral is computed as a sequence of 1D integrations significant speedup can be achieved. The accuracy and convergence properties of the method are demonstrated by numerical experiments.