Title :
Polarization Rotating Frequency Selective Surface Based on Substrate Integrated Waveguide Technology
Author :
Winkler, Simone A. ; Hong, Wei ; Bozzi, Maurizio ; Wu, Ke
Author_Institution :
Poly-Grames Res. Center, Ecole Polytech., Montreal, QC, Canada
fDate :
4/1/2010 12:00:00 AM
Abstract :
A novel frequency selective surface based on substrate integrated waveguide technology (SIW) is proposed and studied theoretically and experimentally. Its primary function is the selection of a linear polarization of an incident wave and its 90-degree rotation in a given frequency band. The proposed structure is based on an SIW cavity, coupled to the input and output by two orthogonal slots, and is designed using a simulation code based on the method of moments boundary integral-resonant mode expansion method, especially developed for the accurate characterization of FSS structures. Moreover, a complete design procedure for the proposed structure and a parametric study of its performance are presented. Finally, in order to verify the proposed structure, a prototype is designed at an operation frequency of 35 GHz, exhibiting a relative bandwidth of 9.1% and an impedance matching of better than -11 dB with a maximum insertion loss of 0.2 dB in the passband. Its performance is investigated in detail including the analysis of non-orthogonal incidence angles.
Keywords :
frequency selective surfaces; impedance matching; method of moments; polarisation; substrate integrated waveguides; waveguide antennas; FSS structures; SIW cavity; boundary integral-resonant mode expansion method; frequency 35 GHz; impedance matching; incident wave; insertion loss; linear polarization; method of moments; nonorthogonal incidence angles; orthogonal slots; polarization rotating frequency selective surface; simulation code; substrate integrated waveguide technology; Bandwidth; Frequency selective surfaces; Impedance matching; Insertion loss; Moment methods; Parametric study; Passband; Polarization; Prototypes; Waveguide theory; Frequency selective surface; method of moments boundary integral-resonant mode expansion (MoM/BI-RME) method; polarization; substrate integrated waveguide;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2010.2041170