Combined Field Integral Equation Based Theory of Characteristic Mode
arXiv:1503.01449 · doi:10.1109/TAP.2015.2452938
Abstract
Conventional electric field integral equation based theory is susceptible to the spurious internal resonance problem when the characteristic modes of closed perfectly conducting objects are computed iteratively. In this paper, we present a combined field integral equation based theory to remove the difficulty of internal resonances in characteristic mode analysis. The electric and magnetic field integral operators are shown to share a common set of non-trivial characteristic pairs (values and modes), leading to a generalized eigenvalue problem which is immune to the internal resonance corruption. Numerical results are presented to validate the proposed formulation. This work may offer efficient solutions to characteristic mode analysis which involves electrically large closed surfaces.
References in corpus (1)
Cited by in corpus (5)
- Validating the Characteristic Modes Solvers
- Unified Theory of Characteristic Modes: Part I -- Fundamentals
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- A Spurious-Free Characteristic Mode Formulation Based on Surface Integral Equation for Patch Antenna Structures
- Scattering-Based Characteristic Mode Theory for Structures in Arbitrary Background: Computation, Benchmarks, and Applications