DocumentCode
1000154
Title
Coaxial feeds for high aperture efficiency and low spillover of paraboloidal reflector antennas
Author
Koch, Gerhard F.
Author_Institution
Deutsche Bundespost, Darmstadt, Germany
Volume
21
Issue
2
fYear
1973
fDate
3/1/1973 12:00:00 AM
Firstpage
164
Lastpage
169
Abstract
Coaxial feeds produce an approximate sector-shaped pattern, an almost optimum pattern of a feed for high aperture efficiency and low spillover of paraboloid antennas. Such a coaxial feed consists of a central circular waveguide which is surrounded by one or more conductors with circular cross sections. Theoretical and experimental investigations on coaxial feeds excited by H11 modes have shown that the first ring yields the highest increase in the aperture efficiency of paraboloid antennas illuminated by them. Measurements performed on paraboloid antennas illuminated by a coaxial feed with only one ring yielded aperture efficiencies of 68 to 75 percent for angular apertures of the paraboloidal reflector of
to
. Circularly symmetric patterns in conjunction with almost linearly polarized aperture fields can be achieved by multimode coaxial feeds. The values for the aperture efficiency, which are calculated for paraboloid antennas illuminated by multimode coaxial feeds, nearly reach the theoretical optimum. The measured values are 68 to 80 percent. In addition, the multimode feeds produce very little cross polarization.
to
. Circularly symmetric patterns in conjunction with almost linearly polarized aperture fields can be achieved by multimode coaxial feeds. The values for the aperture efficiency, which are calculated for paraboloid antennas illuminated by multimode coaxial feeds, nearly reach the theoretical optimum. The measured values are 68 to 80 percent. In addition, the multimode feeds produce very little cross polarization.Keywords
Coaxial aperture antennas; Parabolic reflector antennas; Reflector antenna feeds; Reflector antennas, parabolic; Antenna feeds; Antenna measurements; Antenna theory; Antennas and propagation; Aperture antennas; Coaxial components; Conductors; Polarization; Reflector antennas; Waveguide theory;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1973.1140437
Filename
1140437
Link To Document