English

Theoretical Performance Limits of Massive MIMO with Uncorrelated Rician Fading Channels

Information Theory 2018-11-29 v1 Signal Processing math.IT

Abstract

This work considers a multicell Massive MIMO network with LL cells, each comprising a BS with MM antennas and KK single-antenna user equipments. Within this setting, we are interested in deriving approximations of the achievable rates in the uplink and downlink under the assumption that single-cell linear processing is used at each BS and that each intracell link forms an uncorrelated MIMO Rician fading channel matrix; that is, with a deterministic line-of-sight (LoS) path and a stochastic non-line-of-sight component describing a spatial uncorrelated multipath environment. The analysis is conducted assuming that NN and KK grow large with a given ratio N/KN/K under the assumption that the data transmission in each cell is affected by channel estimation errors, pilot contamination, an arbitrary large scale attenuation and LoS components. Numerical results are used to prove that the approximations are asymptotically tight, but accurate for systems with finite dimensions under different operating conditions. The asymptotic results are also used to evaluate the impact of LoS components. In particular, we exemplify how the number of antennas for achieving a target rate can be substantially reduced with LoS links of only a few dBs of strength.

Keywords

Cite

@article{arxiv.1811.11695,
  title  = {Theoretical Performance Limits of Massive MIMO with Uncorrelated Rician Fading Channels},
  author = {Luca Sanguinetti and Abla Kammoun and Merouane Debbah},
  journal= {arXiv preprint arXiv:1811.11695},
  year   = {2018}
}

Comments

17 pages, 5 figures. To appear in IEEE Transactions on Communications. This is a longer version containing all the mathematical steps for some of the proofs in the Appendices