DocumentCode
110169
Title
Analysis and Design of a Novel Coupled Shorting Strip for Compact Patch Antenna With Bandwidth Enhancement
Author
Chao Sun ; Huili Zheng ; Lingfei Zhang ; Ying Liu
Author_Institution
Sci. & Technol. on Antennas & Microwaves Lab., Xidian Univ., Xi´an, China
Volume
13
fYear
2014
fDate
2014
Firstpage
1477
Lastpage
1481
Abstract
As it is well known, the bandwidth of a patch antenna will decrease with the decrease of antenna size, no matter what size reduction technique is adopted. In this letter, a detailed research on the shorting load, which is a traditional and effective size reduction technique for patch antennas, is done with the help of a transmission line (TL) model of the patch antenna, and a novel design of a coupled shorting strip with bandwidth enhancement is proposed. Based on the research, a compact circularly polarized (CP) patch antenna loaded by the proposed shorting strip is designed for the application of E6 band of COMPASS Navigation System, which has a small electrical size of only λ/7 ×λ/7 ×λ/15 (λ is the wavelength in free space). The simulated and measured results show that the proposed antenna has good and stable performance over the whole operating band, which means that it is quite an ideal compact antenna used for wideband satellite navigation applications.
Keywords
antenna radiation patterns; microstrip antennas; satellite navigation; strip lines; transmission lines; COMPASS navigation system; antenna size; bandwidth enhancement; compact circularly polarized patch antenna; compact patch antenna; novel coupled shorting strip; shorting load; size reduction technique; transmission line model; wideband satellite navigation application; Antenna measurements; Bandwidth; Cascading style sheets; Integrated circuit modeling; Load modeling; Patch antennas; Bandwidth enhancement; circular polarization; compact patch antenna; coupled shorting strip; transmission line model;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2014.2341596
Filename
6866124
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