DocumentCode :
557993
Title :
Design, characterization, and optimization of ultrawideband cavity-backed spiral antennas at microwave frequencies
Author :
Afsar, Mohammed ; Rahman, Nahid ; Cheung, Rudolph
Author_Institution :
Dept. of Electr. Eng., Tufts Univ., Medford, MA, USA
fYear :
2011
fDate :
12-14 Oct. 2011
Firstpage :
261
Lastpage :
264
Abstract :
In this paper, we have presented a methodology for the design and optimization of UWB, absorptive cavity-backed spiral antennas from a microwave material measurement standpoint. We have used a precision transmission-reflection (T/R) based waveguide measurement technique to determine the complex permittivity and permeability of linear dielectric and magnetic materials from 2-40 GHz. From the measured data, we have designed a multi-layer absorbing structure that offers minimum reflection and maximum absorption from 2-18 GHz. We inserted the composite material in the lossy cavity of a 2-arm Archimedean spiral antenna and simulated its radiation patterns. We optimized the thicknesses of each absorbing layer and the air gap in the antenna model such that a lightweight, shallow cavity can be obtained that retains maximum radiation performance. Our methodology can be extended to the accurate and efficient development of any UWB communication system or sub-system in general.
Keywords :
antenna radiation patterns; composite materials; permeability; permittivity; spiral antennas; ultra wideband antennas; 2-arm Archimedean spiral antenna; UWB communication system; absorptive cavity-backed spiral antennas; antenna model; composite material; frequency 2 GHz to 40 GHz; magnetic materials; microwave frequencies; permeability; permittivity; radiation patterns; radiation performance; transmission-reflection based waveguide measurement technique; ultrawideband cavity-backed spiral antennas; Broadband antennas; Cavity resonators; Materials; Microwave measurements; Permeability; Permittivity; Spirals; Broadband absorbers; cavity-backed spiral antenna; complex permittivity and permeability; ultra-wideband systems component; waveguide-based measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference (EuRAD), 2011 European
Conference_Location :
Manchester
Print_ISBN :
978-1-4577-1156-5
Type :
conf
Filename :
6101063
Link To Document :
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