NASA NTRS · 19950011772
Finite element method for eigenvalue problems in electromagnetics
Abstract
Finite element method (FEM) has been a very powerful tool to solve many complex problems in electromagnetics. The goal of the current research at the Langley Research Center is to develop a combined FEM/method of moments approach to three-dimensional scattering/radiation problem for objects with arbitrary shape and filled with complex materials. As a first step toward that goal, an exercise is taken to establish the power of FEM, through closed boundary problems. This paper demonstrates the developed of FEM tools for two- and three-dimensional eigenvalue problems in electromagnetics. In section 2, both the scalar and vector finite elements have been used for various waveguide problems to demonstrate the flexibility of FEM. In section 3, vector finite element method has been extended to three-dimensional eigenvalue problems.
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Reddy, C. J., Deshpande, Manohar D., Cockrell, C. R., Beck, Fred B.. 1994-12-01. Finite element method for eigenvalue problems in electromagnetics. https://ntrs.nasa.gov/citations/19950011772
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