DocumentCode :
2182551
Title :
An anisotropic impedance surface for dual-band linear-to-circular transmission polarization convertor
Author :
Ranga, Yogesh ; Matekovits, Ladislau ; Hay, Stuart G. ; Bird, T.S.
Author_Institution :
CSIRO, ICT Centre, Epping, NSW, Australia
fYear :
2013
fDate :
4-6 March 2013
Firstpage :
47
Lastpage :
50
Abstract :
A transmission polarizer is described that is based on an anisotropic impedance surfaces to convert the incident linearly polarized wave to a circularly polarized one. The polarizer is based on a frequency selective surface (FSS) with two concentric rings having cuts at different orientations/angles. By virtue of anisotropy it is possible to independently control the transmission characteristics of two orthogonal linearly polarized incident plane waves and therefore to achieve polarization conversion in the transmission direction. A unit cell approach with periodic boundary conditions is considered in the design environment; this unit cell incorporates the two concentric rings. The proposed topology supports in achieving dual-band polarization conversion, which has advantages over previously reported designs. The polarizer works at 27.2 GHz and 39.5 GHz and provides the required 90° phase difference between the two orthogonal components, which are equal in magnitude. The structure provides around 99% polarization purity at resonance. The linear performance of this new structure is described through results of numerical simulations.
Keywords :
convertors; frequency selective surfaces; polarisation; telecommunication transmission lines; FSS; anisotropic impedance surface; anisotropic impedance surfaces; dual-band linear-to-circular transmission polarization convertor; frequency 27.2 GHz; frequency 39.5 GHz; frequency selective surface; numerical simulations; orthogonal components; orthogonal linear polarized incident plane waves; periodic boundary conditions; transmission characteristics control; transmission direction; Frequency selective surfaces; Metamaterials; Polarization; Surface impedance; Surface waves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antenna Technology (iWAT), 2013 International Workshop on
Conference_Location :
Karlsruhe
Print_ISBN :
978-1-4673-2830-2
Electronic_ISBN :
978-1-4673-2829-6
Type :
conf
DOI :
10.1109/IWAT.2013.6518296
Filename :
6518296
Link To Document :
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