Weighted sum-rate optimization for multiuser MIMO systems

Shuying Shi, Martin Schubert, Holger Boche

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

19 Scopus citations

Abstract

This paper focuses on transceiver design for sumrate optimization in multiuser MIMO systems with linear processing. Two design criteria are considered: one is to maximize the weighted sum-rate under a total power constraint and the other one is to minimize the total transmit power with a sum-rate requirement. We propose iterative algorithms, which perform optimization in an alternating manner in both virtual uplink and downlink channels. Each iteration contains the optimization of the uplink power, uplink receive Alter and downlink receive Alter. The power optimization to maximize the sum-rate is carried out by minimizing the product of MSEs, which can be formulated as a Geometric Programming (GP) problem. The proposed algorithms are proved to be convergent and outperform the existing schemes. Additionally, we show that this alternating optimization approach can be extended to the case with successive interference cancellation (SIC) in the uplink and interference precompensation (IPC) in the downlink as well. Simulation results show that the global optimum of sum-rate is achieved for all tested scenarios.

Original languageEnglish
Title of host publicationForty-first Annual Conference on Information Sciences and Systems, CISS 2007 - Proceedings
Pages425-430
Number of pages6
DOIs
StatePublished - 2007
Externally publishedYes
Event41st Annual Conference on Information Sciences and Systems, CISS 2007 - Baltimore, MD, United States
Duration: 14 Mar 200716 Mar 2007

Publication series

NameForty-first Annual Conference on Information Sciences and Systems, CISS 2007 - Proceedings

Conference

Conference41st Annual Conference on Information Sciences and Systems, CISS 2007
Country/TerritoryUnited States
CityBaltimore, MD
Period14/03/0716/03/07

Keywords

  • Multiuser MIMO
  • Sum-rate maximization
  • Transceiver design

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