English

Large System Analysis of Linear Precoding in Correlated MISO Broadcast Channels under Limited Feedback

Information Theory 2012-09-11 v5 math.IT

Abstract

In this paper, we study the sum rate performance of zero-forcing (ZF) and regularized ZF (RZF) precoding in large MISO broadcast systems under the assumptions of imperfect channel state information at the transmitter and per-user channel transmit correlation. Our analysis assumes that the number of transmit antennas MM and the number of single-antenna users KK are large while their ratio remains bounded. We derive deterministic approximations of the empirical signal-to-interference plus noise ratio (SINR) at the receivers, which are tight as M,KM,K\to\infty. In the course of this derivation, the per-user channel correlation model requires the development of a novel deterministic equivalent of the empirical Stieltjes transform of large dimensional random matrices with generalized variance profile. The deterministic SINR approximations enable us to solve various practical optimization problems. Under sum rate maximization, we derive (i) for RZF the optimal regularization parameter, (ii) for ZF the optimal number of users, (iii) for ZF and RZF the optimal power allocation scheme and (iv) the optimal amount of feedback in large FDD/TDD multi-user systems. Numerical simulations suggest that the deterministic approximations are accurate even for small M,KM,K.

Keywords

Cite

@article{arxiv.0906.3682,
  title  = {Large System Analysis of Linear Precoding in Correlated MISO Broadcast Channels under Limited Feedback},
  author = {Sebastian Wagner and Romain Couillet and Merouane Debbah and Dirk. T. M. Slock},
  journal= {arXiv preprint arXiv:0906.3682},
  year   = {2012}
}

Comments

submitted to IEEE Transactions on Information Theory

R2 v1 2026-06-21T13:15:34.475Z