English

Large System Analysis of Linear Precoding in MISO Broadcast Channels with Confidential Messages

Information Theory 2016-11-17 v1 math.IT

Abstract

In this paper, we study the performance of regularized channel inversion (RCI) precoding in large MISO broadcast channels with confidential messages (BCC). We obtain a deterministic approximation for the achievable secrecy sum-rate which is almost surely exact as the number of transmit antennas MM and the number of users KK grow to infinity in a fixed ratio β=K/M\beta=K/M. We derive the optimal regularization parameter ξ\xi and the optimal network load β\beta that maximize the per-antenna secrecy sum-rate. We then propose a linear precoder based on RCI and power reduction (RCI-PR) that significantly increases the high-SNR secrecy sum-rate for 1<β<21<\beta<2. Our proposed precoder achieves a per-user secrecy rate which has the same high-SNR scaling factor as both the following upper bounds: (i) the rate of the optimum RCI precoder without secrecy requirements, and (ii) the secrecy capacity of a single-user system without interference. Furthermore, we obtain a deterministic approximation for the secrecy sum-rate achievable by RCI precoding in the presence of channel state information (CSI) error. We also analyze the performance of our proposed RCI-PR precoder with CSI error, and we determine how the error must scale with the SNR in order to maintain a given rate gap to the case with perfect CSI.

Keywords

Cite

@article{arxiv.1304.5850,
  title  = {Large System Analysis of Linear Precoding in MISO Broadcast Channels with Confidential Messages},
  author = {Giovanni Geraci and Romain Couillet and Jinhong Yuan and Merouane Debbah and Iain B. Collings},
  journal= {arXiv preprint arXiv:1304.5850},
  year   = {2016}
}

Comments

to appear IEEE JSAC 2013