DocumentCode
759151
Title
Multimode Transmission for Multiuser MIMO Systems With Block Diagonalization
Author
Chen, Runhua ; Shen, Zukang ; Andrews, Jeffrey G. ; Heath, Robert W., Jr.
Author_Institution
DSPS R&D Center, Texas Instrum. Inc., Dallas, TX
Volume
56
Issue
7
fYear
2008
fDate
7/1/2008 12:00:00 AM
Firstpage
3294
Lastpage
3302
Abstract
A low-complexity multimode transmission technique for downlink multiuser multiple-input-multiple-output (MIMO) systems with block diagonalization (BD) is proposed. The proposed technique adaptively configures the number of data streams for each user by adjusting its number of active receive antenna and switching between single-stream beamforming and multistream spatial multiplexing, as a means to exploit the multimode switching diversity. We consider a highly loaded system where there are a large number of users, hence a subset of users need to be selected. Joint user and antenna selection has been proposed as a multiuser multimode switching technique, where the optimal subset of receive antennas and users are chosen to maximize the sum throughput. The brute-force search, however, is prohibitively complicated. In this paper, two low-complexity near-optimal user/antenna selection algorithms are developed. The first algorithm aims at maximizing a capacity lower bound, derived in terms of the sum Frobenius norm of the channel, while the second algorithm greedily maximizes the sum capacity. We analytically evaluate the complexity of the proposed algorithms and show that it is orders of magnitude lower than that of the exhaustive search. Simulation results demonstrate that the proposed algorithms achieve up to 98% of the sum throughput of the exhaustive search, for most system configurations, while the complexity is substantially reduced.
Keywords
MIMO communication; antennas; channel capacity; diversity reception; multiplexing; multiuser channels; active receive antenna; block diagonalization; brute-force search; downlink multiuser multiple-input-multiple-output systems; low-complexity multimode transmission technique; low-complexity near-optimal user-antenna selection algorithms; multimode switching diversity; multistream spatial multiplexing; multiuser MIMO systems; single-stream beamforming; sum Frobenius norm; Algorithm design and analysis; Array signal processing; Base stations; Downlink; Instruments; Interference; Laboratories; MIMO; Receiving antennas; Throughput; Downlink; multiple-input–multiple-output (MIMO); multiuser; scheduling; sum capacity;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2008.920453
Filename
4545284
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