DocumentCode :
1209292
Title :
Using adaline neural network for performance improvement of smart antennas in TDD wireless communications
Author :
Kavak, Adnan ; Yigit, Halil ; Ertunc, Metin H.
Author_Institution :
Dept. of Comput. Eng., Kocaeli Univ., Izmit, Turkey
Volume :
16
Issue :
6
fYear :
2005
Firstpage :
1616
Lastpage :
1625
Abstract :
In time-division-duplex (TDD) mode wireless communications, downlink beamforming performance of a smart antenna system at the base station can be degraded due to variation of spatial signature vectors corresponding to mobile users especially in fast fading scenarios. To mitigate this, downlink beams must be controlled by properly adjusting their weight vectors in response to changing propagation dynamics. This can be achieved by modeling the spatial signature vectors in the uplink period and then predicting them to be used as beamforming weight vectors for the new mobile position in the downlink transmission period. We show that ADAptive LInear NEuron (ADALINE) network modeling based prediction of spatial signatures provides certain level of performance improvement compared to conventional beamforming method that employs spatial signature obtained in previous uplink interval. We compare the performance of ADALINE with autoregressive (AR) modeling based predictions under varying channel propagation (mobile speed, multipath angle spread, and number of multipaths), and filter order/delay conditions. ADALINE modeling outperforms AR modeling in terms of downlink SNR improvement and relative error improvement especially under high mobile speeds, i.e., V=100 km/h.
Keywords :
adaptive antenna arrays; adaptive signal processing; array signal processing; autoregressive processes; inference mechanisms; neural nets; radio networks; radiowave propagation; signal denoising; time division multiplexing; SNR relative error; TDD wireless communication; adaline neural network; adaptive linear neuron; autoregressive modeling based prediction; beamforming weight vector; channel propagation; delay condition; downlink transmission period; filter order; mobile speed; multipath angle spread; smart antenna; spatial signature; spatial signature vector; time-division-duplex mode; uplink period; Antennas and propagation; Array signal processing; Base stations; Degradation; Downlink; Mobile antennas; Neural networks; Predictive models; Vectors; Wireless communication; Adaline network; autoregressive model; beamforming; linear prediction; smart antennas; vector channel; Algorithms; Cellular Phone; Computer Simulation; Computer-Aided Design; Microwaves; Models, Theoretical; Neural Networks (Computer); Quality Control;
fLanguage :
English
Journal_Title :
Neural Networks, IEEE Transactions on
Publisher :
ieee
ISSN :
1045-9227
Type :
jour
DOI :
10.1109/TNN.2005.857947
Filename :
1528537
Link To Document :
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