DocumentCode
1261736
Title
Effect of an arcjet plume on satellite reflector performance
Author
Ling, Hao ; Kim, Hyeongdong ; Hallock, Gary A. ; Birkner, Bjorn W. ; Zaman, Afroz J M
Author_Institution
Dept. of Electr. & Comput. Eng., Texas Univ., Austin, TX, USA
Volume
39
Issue
9
fYear
1991
fDate
9/1/1991 12:00:00 AM
Firstpage
1412
Lastpage
1420
Abstract
The effect of an arcjet plume on the performance of satellite reflector antennas is studied. The arcjet plume is modeled as a weakly ionized plasma. The spatial permittivity distribution of the plume is approximated using the measured electron density profile and a cold plasma model. Geometrical optics is applied to determine the ray paths as well as the transmitted fields through the inhomogeneous plume. The ray optics results are compared against several exact solutions for scattering from inhomogeneous dielectrics, and good agreement is observed for sufficiently large scatterer size. The far-field antenna patterns of the reflector in the presence of the plume are calculated from the transmitted ray fields using a ray-tube integration scheme. For arcjet prototypes in the 1-kW class, the plume effect on the antenna performance is small. As the electron density increases, the main beam and sidelobe level gradually degrade. The main beam also tends to squint away from the plume region
Keywords
antenna radiation patterns; geometrical optics; reflector antennas; satellite antennas; arcjet plume; cold plasma model; electron density profile; far-field antenna patterns; geometrical optics; main beam; ray optics; ray-tube integration scheme; satellite reflector antennas; sidelobe level; spatial permittivity distribution; transmitted ray fields; weakly ionized plasma; Antenna measurements; Density measurement; Dielectric measurements; Geometrical optics; Optical scattering; Permittivity; Plasma density; Plasma measurements; Reflector antennas; Satellite antennas;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/8.99052
Filename
99052
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