DocumentCode
1267125
Title
77 GHz Stepped Lens With Sectorial Radiation Pattern as Primary Feed of a Lens Based CATR
Author
Multari, M. ; Lanteri, J. ; Le Sonn, J.L. ; Brochier, L. ; Pichot, Ch ; Migliaccio, C. ; Desvilles, J.L. ; Feil, P.
Author_Institution
Lab. of Electron., Antennas & Telecommun. (LEAT), Univ. of Nice-Sophia Antipolis, Valbonne, France
Volume
58
Issue
1
fYear
2010
Firstpage
207
Lastpage
211
Abstract
We describe the design, fabrication and measurements of an axisymmetric dielectric lens, featuring a sectorial radiation pattern at 77 GHz. It will be used as the primary feed of a lens-based compact antenna test range (CATR). Due to symmetry of revolution, the sectorial lens profile can be designed in one dimension by using phase only control. The phase variation is echoed on the lens depth. The resulting stepped lens is simulated using France Telecom Orange Labs SRSRD software (??in-house?? software developed for dielectric axisymmetric radiating structures) and measured in an anechoic chamber at 77 GHz. Two lenses were fabricated with different materials: PVC and polyurethane, respectively. Good agreements were obtained between simulations and measurements. Less than 0.2 dB ripple in the central beam are obtained for the polyurethane lens although relatively high secondary lobes occur at 11??. Comparisons between the near field of a CATR illuminated by a small horn providing a uniform amplitude taper and the sectorial lens are conducted using numerical simulations. Results show that on-axis oscillations are reduced from 6 to 1 dB with the sectorial lens.
Keywords
antenna feeds; antenna radiation patterns; antenna testing; lens antennas; millimetre wave antennas; France Telecom Orange Labs SRSRD software; axisymmetric dielectric lens; bandwidth 77 GHz; lens-based compact antenna test range; numerical simulations; phase only control; primary feed; sectorial radiation pattern; stepped lens; Antenna feeds; Antenna measurements; Antenna radiation patterns; Dielectric measurements; Fabrication; Lenses; Optical design; Software measurement; Telecommunication control; Testing; Compact antenna test range (CATR); dielectric lens; phase control; primary feed; sectorial radiation pattern;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2009.2036130
Filename
5313906
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