JOURNAL ARTICLE

Limited Feedback Unitary Precoding for Spatial Multiplexing Systems

David J. LoveRobert W. Heath

Year: 2005 Journal:   IEEE Transactions on Information Theory Vol: 51 (8)Pages: 2967-2976   Publisher: Institute of Electrical and Electronics Engineers

Abstract

Multiple-input multiple-output (MIMO) wireless systems use antenna arrays at both the transmitter and receiver to provide communication links with substantial diversity and capacity. Spatial multiplexing is a common space-time modulation technique for MIMO communication systems where independent information streams are sent over different transmit antennas. Unfortunately, spatial multiplexing is sensitive to ill-conditioning of the channel matrix. Precoding can improve the resilience of spatial multiplexing at the expense of full channel knowledge at the transmitter-which is often not realistic. This correspondence proposes a quantized precoding system where the optimal precoder is chosen from a finite codebook known to both receiver and transmitter. The index of the optimal precoder is conveyed from the receiver to the transmitter over a low-delay feedback link. Criteria are presented for selecting the optimal precoding matrix based on the error rate and mutual information for different receiver designs. Codebook design criteria are proposed for each selection criterion by minimizing a bound on the average distortion assuming a Rayleigh-fading matrix channel. The design criteria are shown to be equivalent to packing subspaces in the Grassmann manifold using the projection two-norm and Fubini-Study distances. Simulation results show that the proposed system outperforms antenna subset selection and performs close to optimal unitary precoding with a minimal amount of feedback.

Keywords:
Precoding Spatial multiplexing Codebook MIMO Transmitter Zero-forcing precoding Spatial correlation Computer science Rayleigh fading Control theory (sociology) Antenna diversity Channel state information Fading Mathematics Algorithm Channel (broadcasting) Antenna (radio) Decoding methods Telecommunications Wireless Artificial intelligence

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795
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42
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1.00
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Citation History

Topics

Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Wireless Communication Techniques
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Cooperative Communication and Network Coding
Physical Sciences →  Computer Science →  Computer Networks and Communications
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