DocumentCode :
784696
Title :
A Frequency Shift Technique for Pattern Correction in Hologram-Based CATRs
Author :
Viikari, Ville ; Mallat, Juha ; Ala-Laurinaho, Juha ; Häkli, Janne ; Räisänen, Antti V.
Author_Institution :
Helsinki University of Technology, Espoo
Volume :
54
Issue :
10
fYear :
2006
Firstpage :
2963
Lastpage :
2968
Abstract :
The measurement accuracy of a compact antenna test range (CATR) is limited by the level of spurious signals. At millimeter and submillimeter wavelengths the spurious signals are caused by range reflections and deformations of the range collimating element. Several antenna pattern and range evaluation techniques that can be used to mitigate the effects of these nonidealities have been published. At submillimeter wavelengths these techniques are typically time consuming or they are not able to correct the antenna pattern close to the main beam. The frequency shift technique does not have these limitations in a hologram based CATR. In this paper, the applicability of the frequency shift technique is analytically studied for a hologram based CATR. The technique is verified by measurements. The accuracy provided by the frequency shift technique is compared to that of the antenna pattern comparison (APC) technique
Keywords :
antenna radiation patterns; antenna testing; millimetre wave antenna arrays; submillimetre wave antennas; antenna pattern correction; compact antenna test range; frequency shift technique; hologram-based CATR; millimeter wavelength; range evaluation technique; submillimeter wavelength; Antenna measurements; Bandwidth; Collimators; Frequency measurement; Optical reflection; Submillimeter wave measurements; Submillimeter wave technology; Testing; Time measurement; Wavelength measurement; Antenna measurements; compact range; error compensation; submillimeter wave measurements;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2006.882175
Filename :
1707934
Link To Document :
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