DocumentCode
3441070
Title
Optimization of Circular Ring Microstrip Antenna Using Genetic Algorithm
Author
Ganjehmarzy, R. ; Davoody, M.
Author_Institution
Electr. Eng. in MapnaTurbine Co., Urmia Univ., Urmia
fYear
2008
fDate
5-8 May 2008
Firstpage
222
Lastpage
227
Abstract
Circular ring microstrip antennas have several interesting properties that make it attractive in wireless applications. Although several analysis techniques such as cavity model, generalized transmission line model, Fourier-Hankel transform domain and the method of matched asymptotic expansion have been studied by researchers, there is no efficient design tool that has been incorporated with a suitable optimization algorithm. In this paper, the cavity model analysis along with the genetic optimization algorithm is presented for the design of circular ring microstrip antennas. The method studied here is based on the well-known cavity model and the optimization of the dimensions and feed point location of the circular ring antenna is performed via the genetic optimization algorithm, to achieve an acceptable antenna operation around a desired resonance frequency. The antennas designed by this efficient design procedure were realized experimentally, and the results are compared. In addition, these results are also compared to the results obtained by the commercial electromagnetic simulation tool, the FEM based software, HFSS by ANSOFT.
Keywords
antenna feeds; genetic algorithms; microstrip antennas; cavity model analysis; circular ring microstrip antennas; feed point location; genetic optimization algorithm; resonance frequency; wireless applications; Algorithm design and analysis; Antenna feeds; Design optimization; Fourier transforms; Genetic algorithms; Microstrip antennas; Optimization methods; Resonance; Resonant frequency; Software tools;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication Networks and Services Research Conference, 2008. CNSR 2008. 6th Annual
Conference_Location
Halifax, NS
Print_ISBN
978-0-7695-3135-9
Type
conf
DOI
10.1109/CNSR.2008.29
Filename
4519862
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