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March 1, 2000IEEE Transactions on Communications2,539 citations

Fading correlation and its effect on the capacity of multielement antenna systems

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DSDa-shan ShiuGFG.J. FoschiniMGM.J. Gans

Key Points

  • To determine the impact of fading correlation on the theoretical channel capacity of multielement antenna (MEA) communication systems.
  • Represented multielement antenna communication channels using spatial eigenmodes acting as independent single-input single-output subchannels.
  • Applied an abstract narrow-band Rayleigh fading model to characterize correlation based on antenna array geometry and physical scatterer characteristics.
  • Fading correlation directly modifies the statistical distribution of individual spatial subchannel gains.
  • Total multielement antenna capacity varies as the sum of these correlated subchannel capacities rather than following ideal independent distributions.

Abstract

We investigate the effects of fading correlations in multielement antenna (MEA) communication systems. Pioneering studies showed that if the fades connecting pairs of transmit and receive antenna elements are independently, identically distributed, MEAs offer a large increase in capacity compared to single-antenna systems. An MEA system can be described in terms of spatial eigenmodes, which are single-input single-output subchannels. The channel capacity of an MEA is the sum of capacities of these subchannels. We show that the fading correlation affects the MEA capacity by modifying the distributions of the gains of these subchannels. The fading correlation depends on the physical parameters of MEA and the scatterer characteristics. In this paper, to characterize the fading correlation, we employ an abstract model, which is appropriate for modeling narrow-band Rayleigh fading in fixed wireless systems.

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Cite This Study

Shiu et al. (2000) studied this question.

synapsesocial.com/papers/6a08fe01a2bc65e38873b305https://doi.org/10.1109/26.837052
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