DocumentCode :
840476
Title :
Reconstruction of Dispersive Dielectric Properties for PCB Substrates Using a Genetic Algorithm
Author :
Zhang, Jianmin ; Koledintseva, Marina Y. ; Drewniak, James L. ; Pommerenke, David J. ; Dubroff, Richard E. ; Yang, Zhiping ; Cheng, Wheling ; Rozanov, Konstantin N. ; Antonini, Giulio ; Orlandi, Antonio
Author_Institution :
Cisco Syst., Inc., San Jose, CA
Volume :
50
Issue :
3
fYear :
2008
Firstpage :
704
Lastpage :
714
Abstract :
An effective method for extracting parameters of a Debye or a Lorentzian dispersive medium over a wideband frequency range using a genetic algorithm (GA) and a transmission-line model is presented. Scattering parameters (S-parameters) of the transmission-line sections, including a parallel plate, microstrip, and stripline, are measured. Wave equations for TEM/quasi-TEM mode with a complex propagation constant and a frequency-dependent wave impedance are used to evaluate the corresponding S-parameters in an analytical model. The discrepancy between the modeled and measured S-parameters is defined as the objective function in the GA. The GA is used for search of the dispersive-medium parameters by means of minimizing the objective function over the entire frequency range of interest. The reconstructed Debye or Lorentzian dispersive material parameters are corroborated by comparing the original measurements with the FDTD modeling results. The self-consistency of the proposed method is demonstrated by constructing different test structures with an identical material, i.e., material parameters of a substrate extracted from different transmission-line configurations. The port effects on the material parameter extraction are examined by using through-reflection-line calibration.
Keywords :
dielectric properties; dispersive media; finite difference time-domain analysis; genetic algorithms; printed circuits; transmission line theory; Debye dispersive medium; FDTD modeling; Lorentzian dispersive medium; PCB substrates; complex propagation constant; genetic algorithm; parameter extraction; scattering parameters; transmission-line model; Dielectric substrates; Dispersion; Frequency; Genetic algorithms; Microstrip; Partial differential equations; Scattering parameters; Stripline; Transmission lines; Wideband; Electromagnetic propagation in dispersive media; finite-difference time-domain (FDTD) methods; genetic algorithms (GAs); scattering parameters; transmission lines;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2008.927923
Filename :
4603150
Link To Document :
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