DocumentCode
1761911
Title
Fast and Accurate Analysis of Reflector Antennas With Phased Array Feeds Including Multiple Reflections Between Feed and Reflector
Author
Iupikov, O.A. ; Maaskant, R. ; Ivashina, M.V. ; Young, Abram ; Kildal, Per-Simon
Author_Institution
Signals & Syst. Dept., Chalmers Univ. of Technol., Gothenburg, Sweden
Volume
62
Issue
7
fYear
2014
fDate
41821
Firstpage
3450
Lastpage
3462
Abstract
Several electrically large phased array feed (PAF) reflector systems are modeled to examine the mechanism of multiple reflections between parabolic reflectors and low- and high-scattering feeds giving rise to frequency-dependent patterns and impedance ripples. The PAF current is expanded in physics-based macro domain basis functions (CBFs), while the reflector employs the physical optics (POs) equivalent current. The reflector-feed coupling is systematically accounted for through a multiscattering Jacobi approach. An FFT expands the reflector radiated field in only a few plane waves, and the reflector PO current is computed rapidly through a near-field interpolation technique. The FEKO software is used for several cross validations, and the convergence properties of the hybrid method are studied for several representative examples showing excellent numerical performance. The measured and simulated results for a 121-element Vivaldi PAF, which is installed on the Westerbork Synthesis Radio Telescope, are in very good agreement.
Keywords
Jacobian matrices; antenna phased arrays; antenna radiation patterns; convergence of numerical methods; electromagnetic wave scattering; interpolation; physical optics; radiotelescopes; reflector antenna feeds; 121-element Vivaldi PAF; CBF; FEKO software; PAF reflector systems; Westerbork synthesis radio telescope; convergence properties; cross validations; frequency-dependent patterns; high-scattering feeds; impedance ripples; low-scattering feeds; multiple reflection mechanism; multiscattering Jacobi approach; near-field interpolation technique; parabolic reflectors; phased array feed reflector systems; physical optics equivalent current; physics-based macro domain basis functions; plane waves; reflector PO current; reflector antennas; reflector-feed coupling; Antenna feeds; Arrays; Interpolation; Iterative methods; Method of moments; Vectors; Characteristic basis function method; method of moments (MoM); phased array feeds (PFAs); physical optics (POs); radio astronomy;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2014.2320529
Filename
6807787
Link To Document