DocumentCode
1293236
Title
Edge-Born Waves in Connected Arrays: A Finite
Infinite Analytical Representation
Author
Neto, Andrea ; Cavallo, Daniele ; Gerini, Giampiero
Author_Institution
Telecommun. Dept., Delft Univ. of Technol., Delft, Netherlands
Volume
59
Issue
10
fYear
2011
Firstpage
3646
Lastpage
3657
Abstract
Connected arrays constitute one of the most promising options for wideband phased arrays. Like most phased arrays, they are designed using infinite array theory. However, when finiteness is included, edge effects perturb their behavior. These effects are more severe when the arrays are designed to operate over very broad frequency ranges, since the mutual coupling between the elements facilitates the propagation of edge-born waves that can become dominant over large portions of the arrays. Finite array simulations, which would predict these behaviors, are computationally unwieldy. In this paper we present a Green´s function based procedure to assess edge effects in finite connected arrays. First the electric current distribution on the array is rigorously derived. Later on, the introduction of a few simplifying assumptions allows the derivation of an analytical approximation for the current distribution. This latter provides meaningful insights in the induced dominant edge-wave mechanism. The efficiency of connected arrays as a function of their dimension in terms of the wavelength and of the loading feed impedances is investigated.
Keywords
Green´s function methods; electromagnetic wave propagation; Green function based procedure; connected arrays; edge-born wave propagation; electric current distribution; finite array simulations; finite infinite analytical representation; induced dominant edge-wave mechanism; infinite array theory; loading feed impedances; mutual coupling; wideband phased arrays; Approximation methods; Current distribution; Feeds; Finite element methods; Impedance; Load modeling; Phased arrays;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2011.2163788
Filename
5978206
Link To Document