DocumentCode :
1267280
Title :
Study and Design of a Differentially-Fed Tapered Slot Antenna Array
Author :
De Lera Acedo, Eloy ; García, Enrique ; Gonzalez-Posadas, Vicente ; Vázquez-Roy, José Luis ; Maaskant, Rob ; Segovia, Daniel
Author_Institution :
Astron. Centre of Yebes, Nat. Astron. Obs. of Spain, Guadalajara, Spain
Volume :
58
Issue :
1
fYear :
2010
Firstpage :
68
Lastpage :
78
Abstract :
The results of a parametric study and design of an ultrawideband dual-polarized array of differentially-fed tapered slot antenna elements are presented. We examine arrays of bunny-ear antennas and discuss the capabilities and limitations of differential antenna technology. As we focus on radio astronomical applications, the absence of a balancing-feed circuit not only reduces the first-stage noise contribution associated to losses in the feed, but also leads to a cost reduction. Common-modes are supported by the antenna structure when a third conductor is present, such as a ground plane. We demonstrate that anomalies may occur in the differential-mode scan impedance. Knowledge of both types of scan impedances, differential and common mode, is required to properly design differential LNAs and to achieve optimal receiver sensitivity. A compromise solution is proposed based on the partial suppression of the undesired common-mode currents through a (low loss) balancing-dissipation technique. A fully steerable design up to 45?? in both principal planes is achieved.
Keywords :
antenna feeds; differential amplifiers; low noise amplifiers; multifrequency antennas; radioastronomy; slot antenna arrays; ultra wideband antennas; antenna structure; balancing-dissipation technique; balancing-feed circuit; bunny-ear antennas; differential LNA; differential antenna technology; differential-mode scan impedance; differentially-fed tapered slot antenna array design; first-stage noise reduction; ground plane; low noise amplifier; radio astronomical applications; third conductor; ultrawideband dual-polarized antenna array; undesired common-mode currents; Antenna arrays; Circuit noise; Feeds; Impedance; Noise reduction; Parametric study; Slot antennas; Space technology; Ultra wideband antennas; Ultra wideband technology; Antenna array feeds; mutual coupling; phased arrays; radio astronomy;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2009.2036193
Filename :
5313927
Link To Document :
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