DocumentCode
3330893
Title
Adaptive feedback for MIMO beamforming systems
Author
Mondal, Bishwarup ; Heath, Robert W.
Author_Institution
Wireless Networking & Commun. Group, Texas Univ., Austin, TX, USA
fYear
2004
fDate
11-14 July 2004
Firstpage
213
Lastpage
217
Abstract
Multiple-input multiple-output wireless systems can achieve significant diversity and array gain by using transmit beamforming and receive combining techniques. This however, requires channel information at the transmitter in the form of a beamforming vector. The literature describes methods to quantize the beamforming vector and feedback that information to the transmitter assuming a particular channel distribution, commonly uncorrelated Rayleigh. When the channel is correlated, these quantization strategies result in considerable degradation of signal to noise ratio. In such cases, the spatial and temporal correlations in the beamforming vector are exploited to develop quantization schemes that adapt to the distribution of the channel. Two scenarios are considered - (i) when the feedback rate is fixed and distortion is minimized (ii) when distortion is constrained and rate is minimized. Both the algorithms largely outperform quantization schemes that are based on uncorrelated Rayleigh fading assumption.
Keywords
MIMO systems; Rayleigh channels; array signal processing; correlation theory; diversity reception; radio links; spatiotemporal phenomena; MIMO beamforming systems; adaptive feedback; array gain; beamforming vector; channel distribution; multiple-input multiple-output wireless systems; receive combining; spatial-temporal correlation; transmit beamforming; uncorrelated Rayleigh fading; Array signal processing; Degradation; Diversity reception; Downlink; Feedback; MIMO; Quantization; Receiving antennas; Signal to noise ratio; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing Advances in Wireless Communications, 2004 IEEE 5th Workshop on
Print_ISBN
0-7803-8337-0
Type
conf
DOI
10.1109/SPAWC.2004.1439235
Filename
1439235
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