DocumentCode
994107
Title
Element pattern for circular arrays of waveguide-fed axial slits on large conducting cylinders
Author
Sureau, Jean-claude ; Hessel, Alexander
Author_Institution
Grumman Aerospace Corp., Bethpage, NY, USA
Volume
19
Issue
1
fYear
1971
fDate
1/1/1971 12:00:00 AM
Firstpage
64
Lastpage
74
Abstract
Analytical and numerical results are presented for the array element pattern of axial slits in conducting cylinders. The slits are fed by parallel-plate guides in the TEM mode and are matched to free space. Both harmonic series and integral representation for the far-field patterns are obtained and numerically evaluated as a function of
and spacing. The integral representation is treated asymptotically for large values of
. The element patterns exhibit two characteristic features: a dip off broadside and a ripple in the main beam near broadside, the level of both being
dependent. While the harmonic series offers no basis for an explanation of these effects, the asymptotics clearly demonstrates that the pattern can be decomposed into two parts: 1) a space wave contribution which can be directly obtained by substituting the circular array "admittance crater" into the appropriate planar array formulas and exhibits a dip analogous to a grating lobe effect; 2) a set of creeping waves which, unlike the more common type, contribute significantly in the forward region and, by interfering with the space wave, cause the ripple near broadside. These creeping waves are the fast (usually
) space harmonics (grating lobes) of the fundamental, slightly slow set, and their presence does not seem to have been recognized in the literature.
and spacing. The integral representation is treated asymptotically for large values of
. The element patterns exhibit two characteristic features: a dip off broadside and a ripple in the main beam near broadside, the level of both being
dependent. While the harmonic series offers no basis for an explanation of these effects, the asymptotics clearly demonstrates that the pattern can be decomposed into two parts: 1) a space wave contribution which can be directly obtained by substituting the circular array "admittance crater" into the appropriate planar array formulas and exhibits a dip analogous to a grating lobe effect; 2) a set of creeping waves which, unlike the more common type, contribute significantly in the forward region and, by interfering with the space wave, cause the ripple near broadside. These creeping waves are the fast (usually
) space harmonics (grating lobes) of the fundamental, slightly slow set, and their presence does not seem to have been recognized in the literature.Keywords
Antenna array mutual coupling; Circular arrays; Slot arrays; Apertures; Gratings; Mutual coupling; Phased arrays; Planar arrays; Quantum computing;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1971.1139865
Filename
1139865
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