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MODELING OF MICROSTRIP ANTENNA ARRAYS USING THE INTEGRAL EQUATION METHOD

Abstract

The application of the method of integral equations for finding the characteristics and parameters of microstrip antenna arrays is described. When modeling an array of microstrip dipoles each radiator is replaced a wire. The dielectric substrate is taking into account by an introduction of the effective permittivity to the integral equation. From the obtained current distribution it is determined the microstrip dipoles input impedance, taking into account the interaction with the neighboring elements, and calculated radiation pattern of the array and its directivity. The simulation results are compared with the results described in the literature and calculated in the current electrodynamic simulation packages CST MWS, AWR MWO and FEKO.

About the Authors

А. V. Ulanouski
Белорусский государственный университет информатики и радиоэлектроники
Belarus


V. V. Kizimenko
Белорусский государственный университет информатики и радиоэлектроники
Belarus


References

1. Kizimenko V., Ulanouski A. // Proceedings of the TCSET’2012 Conference. 21-24 February 2012, Lviv-Slavske, Ukraine.

2. Митра Р. Вычислительные методы в электродинамике. М., 1977.

3. Панченко Б.А., Нефедов Е.И. Микрополосковые антенны. М., 1986

4. David M. Pozar. // IEEE Transactions on antennas and propagation. 1985. Vol. AP-33, №10, P. 1045.

5. Pradeep K. Agrawal, Bailey M.C. // IEEE Transactions on antennas and propagation. 1977. Vol. AP-25, № 6. P. 756. Д


Review

For citations:


Ulanouski А.V., Kizimenko V.V. MODELING OF MICROSTRIP ANTENNA ARRAYS USING THE INTEGRAL EQUATION METHOD. Doklady BGUIR. 2012;(7):93-99. (In Russ.)

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ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)