DocumentCode :
2825311
Title :
Application of coupled-system analysis to bandwidth enhancement of antennas
Author :
Mayes, P.E.
Author_Institution :
Electromagn. Lab., Illinois Univ., Urbana, IL, USA
fYear :
1990
fDate :
7-11 May 1990
Firstpage :
656
Abstract :
Very closely spaced radiators, when properly coupled, can produce significant increases in impedance bandwidth with little, if any, increase in volume. This phenomenon is illustrated by analyzing some simple coupled networks which can serve as approximate models for coupled resonant radiators. Several tools are available that contribute to different aspects of the solution. State-space analysis provides a very general approach that demonstrates the properties held in common by various models and their physical counterparts. However, some intermediate steps are important to the understanding of how the system works. Computer subroutines can be used to perform numerical evaluations of eigenvalues (natural frequencies) and eigenvectors of the system matrix. Microwave computer-aided design routines can be used to assess the effect of parametric variations and to vary the parameters in a systematic way in order to attempt to meet a performance goal.<>
Keywords :
CAD; antenna theory; eigenvalues and eigenfunctions; electrical engineering computing; microstrip antennas; approximate models; bandwidth enhancement; closely spaced radiators; computer subroutines; coupled resonant radiators; coupled-system analysis; eigenvalues; eigenvectors; microstrip antennas; microwave CAD routines; numerical evaluations; parametric variations; thin cavity antennas; Bandwidth; Coupling circuits; Design automation; Electromagnetic coupling; Electromagnetic devices; Electromagnetic radiation; Frequency; Laboratories; RLC circuits; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 1990. AP-S. Merging Technologies for the 90's. Digest.
Conference_Location :
Dallas, TX, USA
Type :
conf
DOI :
10.1109/APS.1990.115195
Filename :
115195
Link To Document :
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