Spatial Peak Cancellation for Uplink Radio Access: Processing Methods and Performance

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Abstract

High peak-to-average-power ratio (PAPR) is an inevitable challenge in orthogonal frequency-division multiplexing (OFDM) based networks, known to be particularly harmful to efficient utilization of practical power amplifiers (PAs). To preserve the waveform quality, PA back-off can be introduced which, however, directly limits the potential uplink (UL) coverage. This paper proposes a novel PAPR reduction method, by transmitting a peak-cancellation signal (PCS) spatially-precoded to the frequency resources within the operating channel, without introducing any overheads or receiver side interference. The proposed approach can be applied to codebook-based and non-codebook-based transmissions, while also allows for extending the PCS frequency allocation towards neighboring physical resource blocks (PRBs) without interference to other users. Extensive numerical results are provided, conforming with the 3GPP 5G NR transmitter requirements, while also incorporating realistic uplink PA models. The obtained numerical results at FR1 reveals up to 2.6 dB net gain in the effective uplink link budget via using the novel PCS, compared to the plain legacy OFDM signal. Such link budget gains translate to substantial uplink coverage improvements, which can be one major asset in future network deployments towards the 6G era.

Original languageEnglish
Title of host publication2025 IEEE Wireless Communications and Networking Conference, WCNC 2025
PublisherIEEE
ISBN (Electronic)979-8-3503-6836-9
DOIs
Publication statusPublished - 2025
Publication typeA4 Article in conference proceedings
EventIEEE Wireless Communications and Networking Conference - Milan, Italy
Duration: 24 Mar 202527 Mar 2025

Publication series

NameIEEE Wireless Communications and Networking Conference
ISSN (Print)1525-3511
ISSN (Electronic)1558-2612

Conference

ConferenceIEEE Wireless Communications and Networking Conference
Country/TerritoryItaly
CityMilan
Period24/03/2527/03/25

Keywords

  • 5G
  • 6G
  • cellular networks
  • coverage
  • MIMO
  • PAPR reduction
  • peak-cancellation signal
  • spatial precoding

Publication forum classification

  • Publication forum level 1

ASJC Scopus subject areas

  • General Engineering

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