DocumentCode :
1233207
Title :
Capacity-approaching rate function for layered multiantenna architectures
Author :
Lozano, Angel
Author_Institution :
Wireless Commun. Res. Dept., Lucent Technol. Bell Labs, Holmdel, NJ, USA
Volume :
2
Issue :
4
fYear :
2003
fDate :
7/1/2003 12:00:00 AM
Firstpage :
616
Lastpage :
620
Abstract :
The simultaneous use of multiple transmit and receive antennas can unleash very large capacity increases in rich multipath environments. Although such capacities can be approached by layered multiantenna architectures with per-antenna rate control, the need for short-term feedback arises as a potential impediment, in particular as the number of antennas - and, thus, the number of rates to be controlled - increases. What we show, however, is that the need for short-term feedback in fact vanishes as the number of antennas and/or the diversity order increases. Specifically, the rate supported by each transmit antenna becomes deterministic and a sole function of the signal-to-noise ratio of transmit and receive antennas, and the decoding order, all of which are either fixed or slowly varying. More generally, we illustrate - through this specific derivation - the relevance of some established random code-division multiple-access results to the single-user multiantenna problem.
Keywords :
adaptive antenna arrays; channel capacity; code division multiple access; receiving antennas; transmitting antennas; adaptive arrays; antenna diversity; capacity-approaching rate function; channel capacity; diversity order; layered multiantenna architectures; multiple receive antennas; multiple transmit antennas; random code-division multiple-access; rich multipath environments; short-term feedback; signal-to-noise ratio; Antenna feeds; Channel capacity; Covariance matrix; Fading; Feedback; Multiaccess communication; Receiving antennas; Transmitters; Transmitting antennas; Wireless communication;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2003.814330
Filename :
1210728
Link To Document :
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