DocumentCode
793781
Title
Tunable Channel Decomposition for MIMO Communications Using Channel State Information
Author
Jiang, Yi ; Hager, William W. ; Li, Jian
Author_Institution
Dept. of Electr. & Comput. Eng., Florida Univ., Gainesville, FL
Volume
54
Issue
11
fYear
2006
Firstpage
4405
Lastpage
4418
Abstract
We consider jointly designing transceivers for multiple-input multiple-output (MIMO) communications. Assuming the availability of the channel state information (CSI) at the transmitter (CSIT) and receiver (CSIR), we propose a scheme that can decompose a MIMO channel, in a capacity lossless manner, into multiple subchannels with prescribed capacities, or equivalently, signal-to-interference-and-noise ratios (SINRs). We refer to this scheme as the tunable channel decomposition (TCD), which is based on the recently developed generalized triangular decomposition (GTD) algorithm and the closed-form representation of minimum mean-squared-error VBLAST (MMSE-VBLAST) equalizer. The TCD scheme is particularly relevant to the applications where independent data streams with different qualities-of-service (QoS) share the same MIMO channel. The TCD scheme has two implementation forms. One is the combination of a linear precoder and a minimum mean-squared-error VBLAST (MMSE-VBLAST) equalizer, which is referred to as TCD-VBLAST, and the other includes a dirty paper (DP) precoder and a linear equalizer followed by a DP decoder, which we refer to as TCD-DP. We also include the optimal code-division multiple-access (CDMA) sequence design as a special case in the framework of MIMO transceiver designs. Hence, our scheme can be directly applied to optimal CDMA sequence design, both in the uplink and downlink scenarios
Keywords
MIMO systems; channel coding; code division multiple access; equalisers; least mean squares methods; linear codes; precoding; quality of service; transceivers; wireless channels; CDMA; MIMO channel; MIMO communications; MMSE; QoS; SINR; channel state information; code-division multiple-access; data streams; dirty paper precoder; generalized triangular decomposition; linear equalizer; linear precoder; minimum mean-squared-error VBLAST; multiple-input multiple-output communications; qualities-of-service; signal-to-interference-and-noise ratios; transceivers; tunable channel decomposition; Channel capacity; Channel state information; Decoding; Equalizers; MIMO; Multiaccess communication; Propagation losses; Signal to noise ratio; Transceivers; Transmitters; Channel capacity; VBLAST; channel decomposition; dirty paper (DP) precoding; generalized triangular decomposition; joint transceiver design; multiple-input multiple-output (MIMO); optimal CDMA sequences; quality-of-service;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2006.880233
Filename
1710385
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