DocumentCode
579
Title
Effects of Printed UWB Antenna Miniaturization on Pulse Fidelity and Pattern Stability
Author
Jianjun Liu ; Esselle, Karu P. ; Hay, Stuart G. ; Shunshi Zhong
Author_Institution
Centre for Microwave & Wireless Applic., Macquarie Univ., Sydney, NSW, Australia
Volume
62
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
3903
Lastpage
3910
Abstract
A printed full-size UWB antenna and its two miniaturized configurations are presented. By modifying the monopole and the ground plane, 49% and 77% reductions in antenna area are realized, respectively. An investigation is carried out to examine the effect of antenna miniaturization on pulse fidelity and pattern stability. The far-field electric field waveforms and frequency-domain correlation patterns of the three antennas are presented and compared. The results indicate that the pulse fidelity factor (PFF) and pattern stability factor (PSF) have been improved by the proper miniaturization procedure. It is demonstrated that the improvements of the fidelity factor is 21% in the azimuth plane and 4% in the elevation plane. Moreover, the compact antenna also demonstrates 6.7% and 1.1% enhancement of PSF in the azimuth and elevation planes, respectively. Furthermore, the reduction in antenna size does not cause noticeable negative effects on impedance matching.
Keywords
microstrip antennas; ultra wideband antennas; PFF; PSF; azimuth plane; elevation plane; far field electric field waveforms; frequency domain correlation patterns; impedance matching; miniaturized configurations; pattern stability factor; printed UWB antenna miniaturization; pulse fidelity factor; Antenna radiation patterns; Directive antennas; Electric fields; Frequency-domain analysis; Ultra wideband antennas; Bandwidth; miniaturization; pattern stability factor (PSF); pulse fidelity factor (PFF); radiation pattern; time domain correlation pattern; ultra-wideband (UWB);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2014.2322885
Filename
6813620
Link To Document