DocumentCode
657479
Title
Adaptive zero-interference of compact reconfigurable antenna for GPS application
Author
Nayan, M.K.A. ; Jarnlos, M.F. ; Jusoh, M. ; Jais, M.I. ; Sabapaty, T.
Author_Institution
Adv. Commun. Eng. Centre (ACE), Univ. Malaysia Perlis (UniMAP), Arau, Malaysia
fYear
2013
fDate
22-25 Sept. 2013
Firstpage
380
Lastpage
383
Abstract
A novel design of reconfigurable antenna for GPS application is presented in this research. This project proposed a circular disc-shape antenna with beam steering radiation pattern. The antenna is designed by a coaxial probe technique which allow current flow to the center of the antenna. Then, the incident distributed to the surrounding fan ring parasitic via bridges. Three PIN diode switches have been implemented to the proposed antenna design. It is discovered that the switching element is capable to control the beam pattern to achieve a different main lobe angle at the specified location. The proposed antenna achieved to generate beam steering angle of 26°, 176° and 348° with a maximum directivity of 1.948 dB and a gain of 1.456 dB. The reconfigurable antenna which attaches to the Rogers RT5880 with dielectric constant of (2.2) has a 63 mm square dimension. Which all the compensations, the proposed antenna is suitable to be implemented in GPS application.
Keywords
Global Positioning System; UHF antennas; antenna feeds; antenna radiation patterns; beam steering; p-i-n diodes; GPS application; PIN diode switches; Rogers RT5880; beam steering radiation pattern; circular disc-shape antenna; coaxial probe technique; fan ring parasitic; reconfigurable antenna; size 63 mm; switching element; Antenna radiation patterns; Dipole antennas; Global Positioning System; Resonant frequency; Switches; Beam Steering; GPS Antenna; Reconfigurable;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Technology and Applications (ISWTA), 2013 IEEE Symposium on
Conference_Location
Kuching
ISSN
2324-7843
Print_ISBN
978-1-4799-0155-5
Type
conf
DOI
10.1109/ISWTA.2013.6688809
Filename
6688809
Link To Document