Coupling coefficient of a cylindrical dielectric resonator coupled with a microstrip line using orthogonal mutual orientation

Authors

  • I. V. Trubarov National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

DOI:

https://doi.org/10.20535/RADAP.2011.44.96-103

Keywords:

an edge microstrip line, dielectric resonator, coupling coefficient

Abstract

The method of analytical calculation of a coupling coefficient of a cylindrical dielectric resonator coupled with an edge microstrip line in case of their orthogonal mutual orientation is stated. The comparison between three methods of calculation the value of edge microstrip line magnetic field strength is made: finite difference method, conformal map method and finite element method. The technique of calculation the value of a coupling coefficient of resonator coupled with transmission line by given experimental values of system transmission coefficient is stated. The dependence of a coupling coefficient versus the distance between a resonator and a line is studied. The comparison between theoretical and experimental data is provided.

Author Biography

I. V. Trubarov, National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

Трубаров І.В., аспірант Інституту телекомунікацій

References

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М. Е. Ильченко, А. А. Трубин. Электродинамика диэлектрических резонаторов.– Киев: Наукова думка – 2004.

Фуско В. СВЧ цепи. Анализ и автоматизированное проектирование: Пер. с англ. – М.: Радио и связь, 1990. – 288 с.

Конструирование и расчет полосковых устройств. Учебное пособие для вузов. Под редакцией И. С. Ковалева. – М. : «Сов. радио», 1974. – 296 с.

Банков С. Е., Курушин А. А. Расчет антенн и СВЧ структур с помощью HFSS Ansoft – М.: ЗАО «НПП «Родник», 2009. – 256 с.

Published

2012-10-11

How to Cite

Трубаров, І. (2012) “Coupling coefficient of a cylindrical dielectric resonator coupled with a microstrip line using orthogonal mutual orientation”, Visnyk NTUU KPI Seriia - Radiotekhnika Radioaparatobuduvannia, 0(44), pp. 96-103. doi: 10.20535/RADAP.2011.44.96-103.

Issue

Section

Electrodynamics. Microwave devices. Antennas