DocumentCode :
1435381
Title :
An ultrawide-bandwidth tapered resistive TEM horn antenna
Author :
Chang, Ting-Hao ; Burnside, W.D.
Volume :
48
Issue :
12
fYear :
2000
fDate :
12/1/2000 12:00:00 AM
Firstpage :
1848
Lastpage :
1857
Abstract :
A novel stable beamwidth, ultrawide-bandwidth low-scattering antenna is presented. This antenna is a modified version of the conducting slotline bowtie hybrid (SBH) antenna with resistive sheets (Rcards) introduced into the guiding structure design. Since the resistive sheets can attenuate creeping wave fields, much smaller rolled edges are needed in the Rcard SBH antenna. Moreover, due to the Rcard´s partially transparent nature with respect to electromagnetic fields, the radar cross section (RCS) associated with this new antenna is smaller than the original conducting rolled edge one. By employing an optimization process based on the concept of the genetic algorithm, one can easily design the Rcard SBH antenna to obtain a very stable antenna beamwidth and phase center in both the E- and H-planes across the entire operating frequency bandwidth. Because of its constant beamwidth, low RCS, and broad-band features, the Rcard SBH antenna is an ideal antenna for many applications such as a compact range feed. Calculated and measured results are presented to demonstrate the performance of this new antenna
Keywords :
antenna feeds; electromagnetic fields; genetic algorithms; horn antennas; radar cross-sections; slot antennas; slot line components; E-plane; H-plane; RCS; antenna performance; compact range feed; conducting slotline bowtie hybrid antenna; creeping wave fields attenuation; electromagnetic fields; feeding structure; frequency bandwidth; genetic algorithm; guiding structure design; low-scattering antenna; measured results; optimization; phase center; radar cross section; resistive sheets; rolled edge section; stable beamwidth antenna; tapered resistive TEM horn antenna; ultrawide-bandwidth antenna; Antenna feeds; Design optimization; Electromagnetic fields; Genetic algorithms; Horn antennas; Radar antennas; Radar cross section; Slot antennas; Slotline; Ultra wideband antennas;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/8.901273
Filename :
901273
Link To Document :
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