DocumentCode
54696
Title
Wideband and Low-Profile H-Plane Ridged SIW Horn Antenna Mounted on a Large Conducting Plane
Author
Yun Zhao ; Zhongxiang Shen ; Wen Wu
Author_Institution
JGMT, Nanjing Univ. of Sci. & Technol., Nanjing, China
Volume
62
Issue
11
fYear
2014
fDate
Nov. 2014
Firstpage
5895
Lastpage
5900
Abstract
This communication presents a wide-band and low-profile H-plane horn antenna based on ridged substrate integrated waveguide (SIW) with a large conducting ground. The horn antenna is implemented in a single substrate with a thickness of 0.13 λ0 at the center frequency. Despite its low profile, the new H-plane horn antenna achieves a very wide bandwidth by employing an arc-shaped copper taper printed on the extended dielectric slab and a three-step ridged SIW transition. The ridged SIW is critical for widening the operation bandwidth and lowering the characteristic impedance so that an excellent impedance matching from the coaxial probe to the narrow SIW can be obtained over a wide frequency range. Measured VSWR of the fabricated horn antenna is below 2.5 from 6.6 GHz to 18 GHz. The antenna also exhibits stable radiation beam over the same frequency range. It is observed that measured results agree well with simulated ones.
Keywords
UHF antennas; antenna radiation patterns; broadband antennas; horn antennas; impedance matching; ridge waveguides; slabs; substrate integrated waveguides; VSWR; antenna radiation beam; arc-shaped copper taper; characteristic impedance matching; coaxial probe; extended dielectric slab; frequency 2.5 GHz to 6.6 GHz; frequency 6.6 GHz to 18 GHz; large conducting plane; low-profile H-plane ridged SIW horn antenna; substrate integrated waveguide; three-step ridged SIW transition; wideband antenna; Antenna measurements; Apertures; Bandwidth; Dielectrics; Frequency measurement; Horn antennas; Probes; Horn antenna; ridge waveguide; substrate integrated waveguide; wideband antenna;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2014.2354420
Filename
6891293
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