DocumentCode :
1515242
Title :
Effects of finite weight resolution and calibration errors on the performance of adaptive array antennas
Author :
Wennström, Mattias ; öberg, Tommy ; Rydberg, Anders
Author_Institution :
Uppsala Univ., Sweden
Volume :
37
Issue :
2
fYear :
2001
fDate :
4/1/2001 12:00:00 AM
Firstpage :
549
Lastpage :
562
Abstract :
Adaptive antennas are now used to increase the spectral efficiency in mobile telecommunication systems. A model of the received carrier-to-interference plus noise ratio (CINR) in the adaptive antenna beamformer output is derived, assuming that the weighting units are implemented in hardware, The finite resolution of weights and calibration is shown to reduce the CINR. When hardware weights are used, the phase or amplitude step size in the weights can be so large that it affects the maximum achievable CINR. It is shown how these errors makes the interfering signals “leak” through the beamformer and we show how the output CINR is dependent on power of the input signals. The derived model is extended to include the limited dynamic range of the receivers, by using a simulation model. The theoretical and simulated results are compared with measurements on an adaptive array antenna testbed receiver, designed for the GSM-1800 system. The theoretical model was used to find the performance limiting part in the testbed as the 1 dB resolution in the weight magnitude. Furthermore, the derived models are used in illustrative examples and can be used for system designers to balance the phase and magnitude resolution and the calibration requirements of future adaptive array antennas
Keywords :
adaptive antenna arrays; array signal processing; calibration; cellular radio; radio receivers; GSM-1800 system; adaptive array antenna; beamformer; calibration error; carrier-to-interference plus noise ratio; dynamic range; finite weight resolution; mobile telecommunication system; receiver; simulation model; spectral efficiency; Adaptive arrays; Antenna arrays; Calibration; Hardware; Mobile antennas; Noise reduction; Phased arrays; Power system modeling; Receiving antennas; Signal to noise ratio;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/7.937468
Filename :
937468
Link To Document :
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