DocumentCode
998479
Title
Opportunistic Space-Division Multiple Access With Beam Selection
Author
Choi, Wan ; Forenza, Antonio ; Andrews, Jeffrey G. ; Heath, Robert W., Jr.
Author_Institution
Univ. of Texas, Austin
Volume
55
Issue
12
fYear
2007
Firstpage
2371
Lastpage
2380
Abstract
In this paper, a novel transmission technique for the multiple-input multiple-output (MIMO) broadcast channel is proposed that allows simultaneous transmission to multiple users with limited feedback from each user. During a training phase, the base station modulates a training sequence on multiple sets of randomly chosen orthogonal beamforming vectors. Each user sends the index of the best beamforming vector and the corresponding signal-to-interference-plus-noise ratio for that set of orthogonal vectors back to the base station. The base station opportunistically determines the users and corresponding orthogonal vectors that maximize the sum capacity. Based on the capacity expressions, the optimal amount of training to maximize the sum capacity is derived as a function of the system parameters. The main advantage of the proposed system is that it provides throughput gains for the MIMO broadcast channel with a small feedback overhead, and provides these gains even with a small number of active users. Numerical simulations show that a 20% gain in sum capacity is achieved (for a small number of users) over conventional opportunistic space division multiple access, and a 100% gain (for a large number of users) over conventional opportunistic beamforming when the number of transmit antennas is four.
Keywords
MIMO communication; antenna arrays; array signal processing; broadcast antennas; broadcast channels; cellular radio; feedback; space division multiple access; transmitting antennas; beam selection; limited feedback; multiple-input multiple-output broadcast channel; opportunistic space-division multiple access; orthogonal beamforming vector; transmit antenna; Array signal processing; Base stations; Broadcasting; Feedback; MIMO; Numerical simulation; Optical modulation; Phase modulation; Throughput; Transmitting antennas; Beamforming; multiple-input multiple-output (MIMO); space-division multiple access (SDMA);
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2007.910702
Filename
4395263
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