Title :
Design and Experimental Verification of Compact Frequency-Selective Surface With Quasi-Elliptic Bandpass Response
Author :
Luo, Guo Q. ; Hong, Wei ; Lai, Qing H. ; Wu, Ke ; Sun, Ling L.
Author_Institution :
Hangzhou Dianzi Univ., Hangzhou
Abstract :
A compact frequency-selective surface (FSS) having a quasi-elliptic bandpass response is presented in this paper. This was realized by vertically cascading substrate integrated waveguide (SIW) cavities. A single SIW cavity FSS has been fully studied and approximate analytical formulas are introduced to calculate its resonant frequencies. Two different resonances can be excited by a plane wave in the single SIW cavity FSS. According to theories of the cascading cavity filter and dual-mode filter, cross coupling can be realized in cascading SIW cavity FSSs, thus a compact FSS with a quasi-elliptic bandpass response is implemented. A Ka-band sample was fabricated by a printed circuit board (PCB) process. Experiments were carried out to validate this design method. Measured results are in agreement with predicted ones. The proposed quasi-elliptic FSS presents a number of advantages, namely, high selectivity, stable performance, and much reduced volume.
Keywords :
band-pass filters; cavity resonators; frequency selective surfaces; waveguide filters; FSS; Ka-band sample; analytical formulas approximation; cascading cavity filter; compact frequency-selective surface; cross coupling; dual-mode filter; plane wave excitation; printed circuit board process; quasi-elliptic bandpass response; resonant frequencies; substrate integrated waveguide cavities; Band pass filters; Design methodology; Dielectrics; Filtering theory; Frequency selective surfaces; Laboratories; Resonance; Resonator filters; Sun; Surface waves; Cascading cavities; dual-mode filter; frequency-selective surface (FSS); quasi-elliptic; substrate integrated waveguide (SIW);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2007.910085