ICASSP 2024accepted0 citations

Robust Symbol-Level Precoding via a Symbol-Perturbed Zero-Forcing Structure

Wai-Yiu Keung, Yatao Liu, Wing-Kin Ma

Abstract

The present work studies symbol-level precoding (SLP) for multiuser multi-input single-output (MISO) downlink channels and with imperfect channel state information (CSI) at the transmitter. SLP has gained significant interest in recent years because it is capable of enhancing symbol-level performance, such as symbol error probability (SEP), in a direct manner. Lately it has been shown that under a design formulation of SEP-constrained total power minimization, SLP can be regarded as a zero-forcing precoding scheme with appropriate symbol perturbations. That result is obtained under the perfect CSI assumption. In this paper we illustrate that, for the imperfect CSI case and under a worst-case SEP-constrained total power minimization formulation, SLP can also be regarded as a symbol-perturbed ZF scheme. Following such observation, we further establish an algorithm customized for our robust SLP formulation. Numerical results are presented to demonstrate the performance of our robust SLP design.

BibTeX
@inproceedings{icassp2024_robustsymbolleve,
  title = {Robust Symbol-Level Precoding via a Symbol-Perturbed Zero-Forcing Structure},
  author = {Wai-Yiu Keung and Yatao Liu and Wing-Kin Ma},
  booktitle = {ICASSP 2024},
  year = {2024}
}