A Combined Source Integral Equation with Weak Form Combined Source Condition
arXiv:2010.08797 · doi:10.1109/TAP.2018.2800734
Abstract
A combined source integral equation (CSIE) is constructed on the basis of the electric field integral equation (EFIE) to solve electromagnetic radiation and scattering problems containing perfect electrically conducting bodies. It is discretized with Rao-Wilton-Glisson basis functions only, for both electric and magnetic surface current densities. The combined source condition, which ensures the uniqueness of the solution and circumvents the interior resonance problem, is implemented as a weak form side condition. Compared to the common combined field integral equation, the proposed CSIE shows superior accuracy for sharp edges as well as structures with the interior resonance problem. Furthermore, the iterative solver convergence of the CSIE is faster than for the EFIE, which shows about the same accuracy as the CSIE. Results of numerical scattering simulations are presented to demonstrate the accuracy of the presented CSIE.
5 pages, 8 figures, published in IEEE Transactions on Antennas and Propagation, includes fixes to a missing superscript in (5) and a sign error in (8)
Cited by in corpus (4)
- Accuracy and Conditioning of Surface-Source Based Near-Field to Far-Field Transformations
- An Accurate Low-Order Discretization Scheme for the Identity Operator in the Magnetic Field and Combined Field Integral Equations
- A Weak-Form Combined Source Integral Equation with Explicit Inversion of the Combined-Source Condition
- Improved Discretization of the Full First-Order Magnetic Field Integral Equation