DocumentCode :
821914
Title :
Combined use of genetic algorithms and gradient descent optmization methods for accurate inverse permittivity measurement
Author :
Requena-Pérez, Maria E. ; Albero-Ortiz, Antonio ; Monzó-Cabrera, Juan ; Díaz-Morcillo, Alejandro
Author_Institution :
Dept. de Tecnologias de la Informacion y las Comunicaciones, Tech. Univ. of Cartagena, Murcia, Spain
Volume :
54
Issue :
2
fYear :
2006
Firstpage :
615
Lastpage :
624
Abstract :
A novel inverse transmission-line method for the complex permittivity determination of arbitrary shaped materials is presented. Complex permittivity is inferred by using an inverse calculation procedure, which is based on a combined optimization strategy of both genetic algorithms and the gradient descent method. The optimization procedure matches the measured and simulated complex scattering parameters´ frequency behavior of materials within a WR340 waveguide. High accuracy and practical suitability are validated through experimental tests. The dielectric properties of PTFE and epoxy resin mixed with iron-oxide-doped fiberglass have been measured for different shapes and positions. Dielectric multilayer structures have been used to demonstrate that this technique is able to measure the individual permittivity of each element of the structure. Both two- and three-dimensional approaches have been carried out and their advantages and drawbacks discussed.
Keywords :
dielectric materials; dielectric properties; dielectric waveguides; genetic algorithms; gradient methods; permittivity measurement; transmission lines; WR340 waveguides; complex permittivity measurement; complex scattering parameters; dielectric multilayer structure; dielectric properties; epoxy resin; genetic algorithms; gradient descent optimization; inverse permittivity measurement; inverse transmission-line method; iron-oxide-doped fiberglass; microwave energy; Dielectric materials; Dielectric measurements; Frequency measurement; Genetic algorithms; Optimization methods; Permittivity measurement; Scattering parameters; Shape measurement; Testing; Transmission lines; Complex permittivity measurement; genetic algorithms (GAs); gradient descent (GD) method; microwave energy;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2005.862671
Filename :
1589485
Link To Document :
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