JOURNAL ARTICLE

On the capacity of spatially correlated mimo rayleigh-fading channels

Marco ChianiMoe Z. WinAlberto Zanella

Year: 2003 Journal:   IEEE Transactions on Information Theory Vol: 49 (10)Pages: 2363-2371   Publisher: Institute of Electrical and Electronics Engineers

Abstract

In this paper, we investigate the capacity distribution of spatially correlated, multiple-input-multiple-output (MIMO) channels. In particular, we derive a concise closed-form expression for the characteristic function (c.f.) of MIMO system capacity with arbitrary correlation among the transmitting antennas or among the receiving antennas in frequency-flat Rayleigh-fading environments. Using the exact expression of the c.f., the probability density function (pdf) and the cumulative distribution function (CDF) can be easily obtained, thus enabling the exact evaluation of the outage and mean capacity of spatially correlated MIMO channels. Our results are valid for scenarios with the number of transmitting antennas greater than or equal to that of receiving antennas with arbitrary correlation among them. Moreover, the results are valid for an arbitrary number of transmitting and receiving antennas in uncorrelated MIMO channels. It is shown that the capacity loss is negligible even with a correlation coefficient between two adjacent antennas as large as 0.5 for exponential correlation model. Finally, we derive an exact expression for the mean value of the capacity for arbitrary correlation matrices.

Keywords:
MIMO Cumulative distribution function Rayleigh fading Spatial correlation Mathematics Probability density function Fading Channel capacity Topology (electrical circuits) Expression (computer science) Closed-form expression Statistics Mathematical analysis Computer science Combinatorics Beamforming

Metrics

702
Cited By
33.54
FWCI (Field Weighted Citation Impact)
33
Refs
1.00
Citation Normalized Percentile
Is in top 1%
Is in top 10%

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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