DocumentCode
1391085
Title
An Electrically Large Metallic Cavity Antenna With Circular Polarization for Satellite Applications
Author
Zhao, Yang ; Zhang, Zhijun ; Feng, Zhenghe
Author_Institution
State Key Lab. of Microwave & Commun., Tsinghua Univ., Beijing, China
Volume
10
fYear
2011
fDate
7/3/1905 12:00:00 AM
Firstpage
1461
Lastpage
1464
Abstract
An electrically large metallic cavity antenna with circular polarization (CP) is proposed in this letter. The aim is to increase the size of satellite antennas working in the Ku-band and other higher-frequency bands through low cost and easy fabrication. A brass C-band antenna prototype is designed, fabricated, and measured for concept verification. The overall dimensions of the antenna are 0.67λ0 × 0.67λ0 × 0.83λ0 at the working frequency. The resonant mode of the proposed cavity antenna is excited by a coaxial feeding probe, and circular polarization is realized by an inserted perturbation screw. The measured impedance bandwidth for | S11| ≤ -10 dB and 3-dB axial-ratio bandwidth are 1.02 GHz (6.07-7.09 GHz) and 320 MHz (6.59-6.91 GHz), respectively. The measured gain is 8.5 dBic across the whole 3-dB axial-ratio bandwidth. The measured 3-dB axial-ratio beamwidths at the central frequency are 150° and 148° in the xoz- and the yoz-planes, respectively, which is wide enough to cover the >; 0-dBi gain beamwidths of 120° for practical engineering applications. The measured and the simulated results show good agreement.
Keywords
microstrip antennas; polarisation; satellite antennas; Ku-band; bandwidth 1.02 GHz; bandwidth 320 MHz; brass C-band antenna; circular polarization; coaxial feeding probe; impedance bandwidth; metallic cavity antenna; perturbation screw; satellite antenna; Antenna measurements; Bandwidth; Cavity resonators; Gain; Gain measurement; Microstrip antennas; Circular polarization (CP); electrically large; metallic cavity antenna (MCA); satellite applications;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2011.2178585
Filename
6096360
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