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Some power allocation algorithms for cognitive uplink satellite systems

  • Arthur Louchart
  • , Ehsan Tohidi
  • , Philippe Ciblat
  • , David Gesbert
  • , Eva Lagunas
  • , Charly Poulliat
  • IMT Nord Europe
  • Université de Lille
  • Department of Telecommunication Systems
  • TU Berlin
  • Eurecom
  • Interdisciplinary Centre for Security
  • University of Luxembourg
  • Universit de Toulouse 1 - Capitole

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

Cognitive satellite communication (SatCom) is rapidly emerging as a promising technology to overcome the scarcity of the exclusive licensed band model in order to fulfill the increasing demand for high data rate services. The paper addresses power allocation methods for multi-operator multi-beam uplink satellite communication systems co-existing with a Ka-band terrestrial network, using cognitive radio paradigm. Such a scenario is especially challenging because of (i) the coexisting multiple SatCom operators over the cognitive band need to coordinate the use of their resources under limited inter-operator information exchange, and (ii) nonlinear onboard high power amplifier (HPA) which leads to nonlinear interference between users and beams. In order to tackle the first challenge, we propose distributed power allocation algorithms including the standard Alternate Direction Multiplier Method (ADMM); Regarding the HPA nonlinear impairment, we propose nonlinear-aware power allocation based on Signomial Programming. The proposed solutions outperform state-of-the-art in both cases.

Original languageEnglish
Article number32
JournalEurasip Journal on Wireless Communications and Networking
Volume2023
Issue number1
DOIs
Publication statusPublished - 1 Dec 2023

Keywords

  • Cognitive radio
  • Distributed estimation
  • Satellite systems
  • Signomial programming

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