DocumentCode
1554579
Title
Single-layer integrated microstrip array antenna for dual circular polarisation
Author
Ushijima, Yu ; Nishiyama, Eisuke ; Aikawa, Masayoshi
Author_Institution
Grad. Sch. of Sci. & Eng., Saga Univ., Saga, Japan
Volume
6
Issue
8
fYear
2012
Firstpage
962
Lastpage
968
Abstract
A single-layer integrated microstrip array antenna for dual circular polarisation is proposed. It consists of an orthogonal linearly polarised microstrip array antenna and a 90° hybrid circuit using a single-layer substrate. The orthogonally polarised array antenna uses double-sided microwave-integrated circuit (MIC) technology including airbridges, effectively. It has excellent isolation and cross-polarisation suppression performance between the orthogonal modes and flexibility of the antenna size extension. By integrating it with the 90° hybrid circuit, the proposed array antenna can excite the orthogonal circular polarisations [right-hand circular polarisation (RHCP), left-hand circular polarisation (LHCP)] simultaneously. It is possible to easily realise wireless integration modules because of a single-layer structure. The simulated and experimental results show good circular polarisation performance for both the RHCP and LHCP. The design frequency is 10°GHz and the 3°dB axial ratio bandwidths of both the RHCP and LHCP are approximately 10° in the experiment.
Keywords
microwave antenna arrays; microwave integrated circuits; airbridge; cross-polarisation suppression performance; double-sided microwave-integrated circuit technology; dual circular polarisation; frequency 10 GHz; hybrid circuit; isolation performance; left-hand circular polarisation; orthogonal circular polarisation; orthogonal linearly polarised microstrip array antenna; orthogonal mode; right-hand circular polarisation; single-layer integrated microstrip array antenna; single-layer structure; single-layer substrate; wireless integration module;
fLanguage
English
Journal_Title
Microwaves, Antennas & Propagation, IET
Publisher
iet
ISSN
1751-8725
Type
jour
DOI
10.1049/iet-map.2011.0413
Filename
6235268
Link To Document