DocumentCode
2894806
Title
Optimal Weighted Antenna Selection for Imperfect Channel Knowledge from Training
Author
Kristem, Vinod ; Mehta, Neelesh B. ; Molisch, Andreas F.
Author_Institution
Electr. Commun. Eng. Dept., Indian Inst. of Sci. (IISc), Bangalore, India
fYear
2009
fDate
14-18 June 2009
Firstpage
1
Lastpage
6
Abstract
Receive antenna selection (AS) reduces the hardware complexity of multi-antenna receivers by dynamically connecting an instantaneously best antenna element to the available radio frequency (RF) chain. Due to the hardware constraints, the channels at various antenna elements have to be sounded sequentially to obtain estimates that are required for selecting the "best" antenna and for coherently demodulating data. Consequently, the channel state information at different antennas is outdated by different amounts. We show that, for this reason, simply selecting the antenna with the highest estimated channel gain is not optimum. Rather, the channel estimates of different antennas should be weighted differently, depending on the training scheme. We derive closed-form expressions for the symbol error probability (SEP) of AS for MPSK and MQAM in time-varying Rayleigh fading channels for arbitrary selection weights, and validate them with simulations. We then derive an explicit formula for the optimal selection weights that minimize the SEP. We find that when selection weights are not used, the SEP need not improve as the number of antenna elements increases, which is in contrast to the ideal channel estimation case. However, the optimal selection weights remedy this situation and significantly improve performance.
Keywords
Rayleigh channels; antenna arrays; demodulation; error statistics; phase shift keying; quadrature amplitude modulation; time-varying channels; Rayleigh fading channel; antenna selection; closed-form expression; hardware complexity; multiantenna receiver; optimal weighted antenna selection; phase shift keying; quadrature amplitude modulation; radio frequency; symbol error probability; time-varying channel; Channel estimation; Channel state information; Closed-form solution; Error probability; Fading; Hardware; Joining processes; Radio frequency; Receivers; Receiving antennas;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 2009. ICC '09. IEEE International Conference on
Conference_Location
Dresden
ISSN
1938-1883
Print_ISBN
978-1-4244-3435-0
Electronic_ISBN
1938-1883
Type
conf
DOI
10.1109/ICC.2009.5199290
Filename
5199290
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