DocumentCode
752714
Title
Theory and experiment of novel frequency selective surface based on substrate integrated waveguide technology
Author
Luo, Guo Qing ; Hong, Wei ; Hao, Zhang-Cheng ; Liu, Bing ; Li, Wei Dong ; Chen, Ji Xin ; Zhou, Hou Xing ; Wu, Ke
Author_Institution
Dept. of Radio Eng., Southeast Univ., Nanjing, China
Volume
53
Issue
12
fYear
2005
Firstpage
4035
Lastpage
4043
Abstract
A novel frequency selective surface (FSS) based on substrate integrated waveguide (SIW) technology is investigated with simulation and experiment. The periodic unit is made of a SIW cavity with slots on the top and bottom surfaces, and the whole FSS is fabricated on a microwave substrate with standard PCB process. The high-Q property of SIW cavities greatly improved the frequency selectivity of the FSS, which is significant for the application in antenna cover or object stealth etc. The finite difference frequency domain (FDFD) method is adopted to simulate the transmission and reflection characteristics of the proposed FSS, and the simulated results are in good agreement with the experiment data. Both simulated and experiment results show that the FSS proposed in this paper takes the advantages of low passband insertion loss, good frequency selectivity, and insensitive to the incident angle and polarization etc. Besides, the FSS can be easily fabricated using normal PCB process with low cost.
Keywords
Q-factor; cavity resonators; electromagnetic wave polarisation; finite difference methods; frequency selective surfaces; frequency-domain analysis; periodic structures; substrates; waveguide antenna arrays; FDFD; FSS; SIW cavity; antenna; finite difference frequency domain method; frequency selective surface; high-Q property; low passband insertion loss; microwave substrate fabrication; periodic structure; polarization; standard PCB process; substrate integrated waveguide technology; Apertures; Dielectric substrates; Finite difference methods; Frequency domain analysis; Frequency selective surfaces; Passband; Polarization; Resonance; Surface waves; Waveguide theory; Cavity; finite difference frequency domain (FDFD); frequency selective surface (FSS); periodic structure; substrate integrated waveguide (SIW);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2005.860010
Filename
1549985
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