Title :
Finite-difference computation of the characteristic impedance of unbounded striplines and microstrip lines
Author :
Rosales, Orlando ; Suster, Daniel
Author_Institution :
Dept. de Electronica y Circuitos, Simon Bolivar Univ., Caracas, Venezuela
Abstract :
A novel numerical method for the computation of the TEM characteristic impedance of unbounded striplines and microstrip lines is presented. The method uses non-linear orthogonal transformations to map the unbounded domain into a rectangle for the application of the finite-difference method. Equations for the electrostatic potential and the per-unit length capacitances are derived in the transformed domain. The finite-difference method is applied to obtain discrete versions of these equations. The over-relaxation algorithm is used to solve the discrete equations for the electrostatic potential. The characteristic impedance is computed in terms of the per-unit length capacitances. The implementation of the algorithm that solves the discrete equations is described. Results computed with our method and with Wheeler´s formulas are compared, showing excellent agreement between the two methods
Keywords :
capacitance; electric impedance; finite difference methods; microstrip lines; strip lines; transmission line theory; TEM characteristic impedance; capacitances; characteristic impedance; discrete equations; electrostatic potential; finite-difference computation; nonlinear orthogonal transformations; numerical method; over-relaxation algorithm; unbounded microstrip lines; unbounded striplines; Capacitance; Conductors; Electrostatics; Finite difference methods; Geometry; H infinity control; Impedance; Microstrip; Nonlinear equations; Stripline;
Conference_Titel :
Devices, Circuits and Systems, 1995., Proceedings of the 1995 First IEEE International Caracas Conference on
Conference_Location :
Caracas
Print_ISBN :
0-7803-2672-5
DOI :
10.1109/ICCDCS.1995.499169