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Inflection point caustic problems and solutions for high-gain dual-shaped reflectorsThe singular nature of the uniform geometrical theory of diffraction (UTD) subreflector scattered field at the vicinity of the main reflector edge (for a high-gain antenna design) is investigated. It is shown that the singularity in the UTD edge-diffracted and slope-diffracted fields is due to the reflection distance parameter approaching infinity in the transition functions. While the geometrical optics (GO) and UTD edge-diffracted fields exhibit singularities of the same order, the edge slope-diffracted field singularity is more significant and is substantial for greater subreflector edge tapers. The diffraction analysis of such a subreflector in the vicinity of the main reflector edge has been carried out efficiently and accurately by a stationary phase evaluation of the phi-integral, whereas the theta-integral is carried out numerically. Computational results from UTD and physical optics (PO) analysis of a 34-m ground station dual-shaped reflector confirm the analytical formulations for both circularly symmetric and offset asymmetric subreflectors. It is concluded that the proposed PO(theta)GO(phi) technique can be used to study the spillover or noise temperature characteristics of a high-gain reflector antenna efficiently and accurately.
Document ID
19900043581
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Galindo-Israel, Victor
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA, United States)
Veruttipong, Thavath
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA, United States)
Imbriale, William
(JPL Pasadena, CA, United States)
Rengarajan, Sembiam
(California State University Northridge, United States)
Date Acquired
August 14, 2013
Publication Date
February 1, 1990
Publication Information
Publication: IEEE Transactions on Antennas and Propagation
Volume: 38
ISSN: 0018-926X
Subject Category
Communications And Radar
Accession Number
90A30636
Distribution Limits
Public
Copyright
Other

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