The assembling scheme in S-matrix based full-wave electromagnetic modelling systems

Authors

  • Anatoliy A. Kirilenko Usikov Institute of Radiophysics and Electronics of the National Academy of Sciences of Ukraine, Ukraine https://orcid.org/0000-0002-8717-5334
  • Vladimir I. Tkachenko Usikov Institute of Radiophysics and Electronics of the National Academy of Sciences of Ukraine, Ukraine
  • Sergey L. Senkevich Usikov Institute of Radiophysics and Electronics of the National Academy of Sciences of Ukraine, Ukraine
  • Sergey F. Kulishenko Usikov Institute of Radiophysics and Electronics of the National Academy of Sciences of Ukraine, Ukraine

DOI:

https://doi.org/10.1109/ICATT.2005.1497019

Keywords:

S-matrix technique, modeling, multiparametric optimization, complicated microwave devices

Abstract

The basic principles and object peculiarities that have to be taken into account at “electromagnetic assembling” of a complicated device by known S-matrices of key-elements are discussed. The detailed automatic consideration of plane symmetry of lines, plane junctions and tees, longitudinal symmetry of filters and dividers, uniformity of many waveguide elements along transversal axes, search of identical elements or their consequences together with the extraction the “variable” and “nonvariable” device parts makes possible to reduce the calculation times by orders. The usage of the proposed  assembling schemes is extremely profitable at optimization problem solution for multiparametric couplers, diplexers and so on.

References

NIKOLSKIY, V.V.; ORLOV, V.P.; ET AL. Automated Microwave Devices Design. Moscow: Radio i Svyaz, 1982 [in Russian].

KIRILENKO, A.; KULIK, D.; PARKHOMENKO, Y.; RUD, L.; TKACHENKO, V. Automatic electromagnetic solvers based on mode-matching, transverse resonance, and S-matrix techniques. Proc. of XIV Int. Conf. on Microwaves, Radar and Wireless Comm., MIKON-2002, 20-23 May 2002, Poland. IEEE, 2002, v.3, p.815-824, doi: http://dx.doi.org/10.1109/MIKON.2002.1017964.

TKACHENKO, V.I.; KULIK, D.Y.; SENKEVICH, S.L. Calculating the TEM modes field in waveguides with the complicated cross-sections. IRE Trans., 2002, v.7, p.277-284.

KIRILENKO, A.A.; VASILYEVA, T.I.; TKACHENKO, V.I.; RUD', L.A. Method of virtual decomposition for the solution of 3-D diffraction problems. Proc. of the 5th Int.Conf. on Math. Methods in EM Theory, MMET-94, Kharkov, Ukraine. Kharkov, 1994.

KIRILENKO, A.A.; RUD', L.A.; TKACHENKO, V.I.; PRAMANICK, P. A systematic approach for computer aided design of waveguide E-plane diplexers. Int. J. RF and Microwave CAE, Mar. 1999, v.9, n.2, p.104-116, doi: http://dx.doi.org/10.1002/(SICI)1099-047X(199903)9:2<104::AID-MMCE5>3.0.CO;2-A.

KIRILENKO, A.; KULIK, D.; PARKHOMENKO, Y.; RUD, L.; TKACHENKO, V. Iterational optimization scheme for microwave bandpass filters. IRE Trans., 1997, v.42, n.4, p.413-419.

Published

2005-06-06

Issue

Section

Microwave components and circuits, fiber-optic links