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Antenna pattern control using impedance surfacesA hybrid numerical technique is developed for electrically large pyramidal horn antennas radiating in free space. A stepped-waveguide method is used to analyze the interior surfaces of the horn transition. The Electric Field Integral Equation (EFIE) is employed on the outer surfaces of the pyramidal horn including the radiating aperture. Meanwhile, the Magnetic Field Integral Equation (MFIE) is used on the aperture to relate the aperture fields and those in the horn transition. The resultant hybrid field integral equation (HFIE) is solved numerically by the method of moments. This formulation is both accurate and numerically stable so that high-gain microwave pyramidal horns can be analyzed rigorously. Far-field radiation patterns, both computed and measured, are presented for three electrically-large x-band horn antennas. The comparisons demonstrate that this method is accurate enough to predict the fine pattern structure at wide angles and in the back region. Computed far-field patterns and aperture field distribution of two smaller x-band horns are also presented along with a discussion on the validity of the approximate aperture field distributions routinely used in the analysis and design of pyramidal horns.
Document ID
19930015282
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Balanis, Constantine A.
(Arizona State Univ. Tempe, AZ, United States)
Liu, Kefeng
(Arizona State Univ. Tempe, AZ, United States)
Date Acquired
September 6, 2013
Publication Date
March 15, 1993
Subject Category
Communications And Radar
Report/Patent Number
NAS 1.26:192712
TRC-EM-CAB-93003
NASA-CR-192712
Report Number: NAS 1.26:192712
Report Number: TRC-EM-CAB-93003
Report Number: NASA-CR-192712
Accession Number
93N24471
Funding Number(s)
CONTRACT_GRANT: NAG1-1183
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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