Open problems in CEM: Error-controllable and well-conditioned MoM solutions in computational electromagnetics: Ultimate surface integral-equation formulation
Pasi Ylä‐Oijala, Sami P. Kiminki, Johannes Markkanen, Seppo Järvenpää
Abstract
Pasi Ylä‐Oijala, Sami P. Kiminki, Johannes Markkanen, Seppo Järvenpää
Abstract
The ultimate goal in computational electromagnetics is to develop numerical methods and algorithms that are effective, stable, and give accurate and error-controllable results over a wide range of frequencies, material parameters, geometries, and applications. This article discusses obstacles and challenges in achieving that goal with frequency-domain surface integral-equation methods.
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The ultimate goal in computational electromagnetics is to develop numerical methods and algorithms that are effective, stable, and give accurate and error-controllable results over a wide range of frequencies, material parameters, geometries, and applications. This article discusses obstacles and challenges in achieving that goal with frequency-domain surface integral-equation methods.
Key concepts: Electromagnetics, Integral equation, Method of moments (probability theory), Computational electromagnetics, Range (aeronautics), Surface (topology), Computer science, Applied mathematics