ICASSP 2017accepted0 citations

Non-convex consensus ADMM for satellite precoder design

Miguel Ángel Vázquez, Aritra Konar, Luis Blanco, Nicholas D. Sidiropoulos, Ana I. Pérez-Neira

Abstract

Owing to the rapidly increasing traffic demands on satellite connectivity, the current exclusive frequency allocation is becoming obsolete. Instead, aggressive frequency reuse and interference mitigation techniques are promising ideas that both industry and academia are investigating. This paper proposes an optimization precoding technique for dealing with the multibeam interference due to the aggressive frequency reuse. In contrast to general multiuser multiple input multiple output (MIMO) schemes, multibeam satellite precoding techniques call for frame-by-frame quadratically constrained quadratic optimization of a large number of variables. We focus on the multigroup multicast beamforming optimization problem, and we propose to adopt a consensus-based alternating direction method of multipliers (C-ADMM) approach, in order to mitigate complexity. The proposed C-ADMM approach is shown to exhibit comparable optimization performance at considerably lower complexity relative to the prior state-of-art for the formulation considered.

BibTeX
@inproceedings{icassp2017_nonconvexconsens,
  title = {Non-convex consensus ADMM for satellite precoder design},
  author = {Miguel Ángel Vázquez and Aritra Konar and Luis Blanco and Nicholas D. Sidiropoulos and Ana I. Pérez-Neira},
  booktitle = {ICASSP 2017},
  year = {2017}
}
Non-convex consensus ADMM for satellite precoder design · ICASSP 2017