DocumentCode :
1266922
Title :
Axial Ratio Enhancement for Circularly-Polarized Millimeter-Wave Phased-Arrays Using a Sequential Rotation Technique
Author :
Smolders, A. Bart ; Johannsen, U.
Author_Institution :
Eindhoven Univ. of Technol., Eindhoven, Netherlands
Volume :
59
Issue :
9
fYear :
2011
Firstpage :
3465
Lastpage :
3469
Abstract :
Circular polarization is indispensable for robust wireless communication between mobile devices that operate at mm-wave frequencies. Additionally, phased-array solutions are required to cope with the associated free space path loss. In view of the size constraints for antennas integrated on (Bi)CMOS chips, an array of linearly polarized dipoles using a sequential rotation scheme is an attractive approach to comply with all mentioned requirements. When steering such an array off broadside, however, the axial ratio will severely degrade. It is the purpose of this communication to demonstrate how the axial ratio can be retained by compensating the amplitudes and phases of the individual antenna elements. Measured results on a 6 GHz test-bed show that the axial ratio with the proposed calibration scheme remains below 3 dB within the 3 dB beamwidth of the scanned beam. Results from a 60 GHz test-bed confirm the effectiveness of the method.
Keywords :
BiCMOS integrated circuits; antenna phased arrays; calibration; electromagnetic wave polarisation; millimetre wave antenna arrays; mobile radio; BiCMOS chip; antenna elements; axial ratio enhancement; calibration scheme; circularly polarized millimeter wave phased arrays; free space path loss; linearly polarized dipole antenna array; mobile devices; robust wireless communication; sequential rotation technique; Antenna arrays; Antenna measurements; Arrays; Calibration; Dipole antennas; Polarization; Antenna-on-chip; axial ratio; calibration; circular polarization; integrated antennas; mm-wave antennas; phased arrays; printed dipoles;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2161443
Filename :
5944960
Link To Document :
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