Author:
Costamagna Eugenio,Barba Paolo Di
Abstract
AbstractField singularities in electrostatic and magnetostatic fields require special attention in field calculations, and today finite element methods are normally used, both in homogeneous and in inhomogeneous dielectric cases. Conformal mappings are a traditional tool in the homogeneous case, but two-stage Schwarz-Christoffel + Finite Difference procedures have been proposed for a long time to solve problems in case of inhomogeneous dielectric materials too. This allowed to overcome accuracy problems caused by convex corners in the domain boundary and relevant field singularities, and to easily apply finite difference (FD) solvers in rectangular domains. In this paper, compound procedures Schwarz-Christoffel + Finite Elements Method procedures are suggested, to improve both the accuracy and the speed of second stage calculations. The results are compared to Schwarz-Christoffel + Finite Difference and to direct finite-element calculations, and the small differences analyzed considering a well know case study geometry,i.e., a shielded dielectric-supported stripline geometry.
Subject
General Physics and Astronomy
Reference6 articles.
1. Conductor-backed and upper-shielded coplanar waveguide with finite ground planes;Microwave and Optical Technol. Lett.,1993
2. Computing capacitances of vias in multilayered boards;IEEE Trans. On Magnetics,2001
3. Characteristic impedance and phase velocity of a dielectric-supported air strip transmission line with side walls;IEEE Trans. on MTT,1970
4. Computing capacitances via the Schwarz-Christoffel transformation in structure with rotational symmetry;IEEE Trans. on Magnetics,1998
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