DocumentCode :
1205492
Title :
An electromagnetic bandgap curl antenna for phased array applications
Author :
Baracco, Jean-Marc ; Paquay, Maurice ; De Maagt, Peter
Author_Institution :
MARDEL, Vence, France
Volume :
53
Issue :
1
fYear :
2005
Firstpage :
173
Lastpage :
180
Abstract :
A promising way to reduce the problems created by surface waves in printed phased array antennas is to use an electromagnetic bandgap (EBG) substrate instead of a standard dielectric. Two metallo-dielectric EBG substrates well suited for phased array applications have been designed and tested. One of them has a compact unit cell and exhibits a broad bandwidth performance. The other EBG structure has a narrower bandwidth but is simple to manufacture and has a low mechanical profile. Single radiating elements and a small linear array have been manufactured on a standard dielectric substrate and on the EBG substrates. The measurements show a significant improvement in radiation efficiency as well as of the front to back ratio for the antennas manufactured on the EBG substrates compared to the ones obtained for the antennas manufactured on the standard dielectric substrate. These results clearly demonstrate the effectiveness of the EBG substrates in reducing the surface and guided waves.
Keywords :
antenna phased arrays; antenna testing; dielectric materials; linear antenna arrays; microstrip antenna arrays; photonic band gap; planar antenna arrays; broad bandwidth performance; curl antenna; dielectric substrate; guided waves; linear array; mechanical profile; metallo-dielectric electromagnetic bandgap; metamaterials; narrower bandwidth; phased array antenna; phased array applications; planar antennas; radiation efficiency; single radiating elements; surface waves; Antenna arrays; Bandwidth; Dielectric substrates; Linear antenna arrays; Manufacturing; Metamaterials; Periodic structures; Phased arrays; Surface waves; Testing;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2004.840418
Filename :
1377586
Link To Document :
بازگشت