DocumentCode :
3375956
Title :
Design of microwave and optical filters using the inverse scattering method
Author :
Papachristos, C. ; Frangos, P.
Author_Institution :
Dept. of Electr. & Comput. Eng., Athens Nat. Tech. Univ., Greece
fYear :
2000
fDate :
2000
Firstpage :
117
Abstract :
Summary form only given. We consider particular applications of one-dimensional inverse scattering theory towards the direction of the design of microwave and optical filters of particular form. In particular, we consider the following two problems of filter design. (i) The design of continuous microstrip tapers with prescribed filter characteristics (microwave filters): here the width w(x) of a microstrip is to be designed, once the input reflection coefficient r(k) of the filter is given. The design procedure uses the one-dimensional (1-D) inverse scattering theory. (ii) The design of optical corrugated waveguide filters: in this application the corrugation function of a planar optical waveguide is designed with given the frequency characteristics of the corresponding filter. In the present formulation, coupled Gel´fand-Levitan-Marchenko (GLM) integral equations have to be solved as a part of the design algorithm. This solution is implemented in several ways, such as a special numerical technique, called ´leapfrogging´ technique, or through a method which transforms the coupled GLM equations to linear algebraic systems of equations, which are easily solved numerically. The comparison of these methods checks the accuracy of the proposed design method. This is also accomplished, as usually, through the numerical solution of the corresponding Riccati differential equation. After the solution of the GLM equations, the amplitude and phase functions of the corrugation design directly follow
Keywords :
differential equations; electromagnetic wave scattering; inverse problems; microstrip filters; microwave filters; optical waveguide filters; 1D inverse scattering theory; Gel´fand Levitan Marchenko integral equation; Riccati differential equation; continuous microstrip tapers; design algorithm; filter characteristics; frequency characteristics; input reflection coefficient; inverse scattering method; leapfrogging technique; linear algebraic equations; microstrip width; microwave filters; optical corrugated waveguide filters; planar optical waveguide; Integral equations; Inverse problems; Microstrip components; Microstrip filters; Microwave filters; Optical design; Optical filters; Optical scattering; Optical waveguides; Riccati equations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Electromagnetism, 2000. Proceedings of the Second International Symposium of Trans Black Sea Region on
Conference_Location :
Xanthi
Print_ISBN :
0-7803-6428-7
Type :
conf
DOI :
10.1109/AEM.2000.943272
Filename :
943272
Link To Document :
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