Detail publikačního výsledku

Coexistence Niche of Ultra-Wideband and Wi-Fi: Suspected Spurious Signal Reception in Channel 5

Radovan Juran, Jari Nurmi, Aleksandr Ometov

Originální název

Coexistence Niche of Ultra-Wideband and Wi-Fi: Suspected Spurious Signal Reception in Channel 5

Anglický název

Coexistence Niche of Ultra-Wideband and Wi-Fi: Suspected Spurious Signal Reception in Channel 5

Druh

Stať ve sborníku v databázi WoS či Scopus

Originální abstrakt

Introducing Wi-Fi 6E and the emerging Wi-Fi 7 has raised significant questions about the coexistence of Ultra-Wideband (UWB) systems operating in the 6 GHz frequency band. The research in this field has mainly focused on the impact of Wi-Fi on UWB communication and the range of their simultaneous operation. Prior studies have highlighted the destructive effects of Wi-Fi on UWB communication in this band, including the false detection of UWB frames while ongoing UWB transmission. However, to our knowledge, no studies have focused exclusively on the impact of Wi-Fi signals solely on UWB receivers’ behavior in isolation. This paper addresses this gap by presenting results obtained under controlled conditions in an anechoic chamber, where external interference is eliminated. Using a setup with only a DW1000 UWB receiver (DWM1001-DEV) and a Wi-Fi 6E access point (Netgear RAXE500) transmitting standard beacon frames and then traffic emulated by iperf tool it was observed that UWB reception can be influenced even without ongoing active UWB transmissions. On top of that, some of these dropped UWB packets (false negatives) showed signs of good CRC checks (false positives). These findings provide a foundation for further exploration, particularly with both legacy and newer UWB chips to confirm or disprove the implications hereby presented.

Anglický abstrakt

Introducing Wi-Fi 6E and the emerging Wi-Fi 7 has raised significant questions about the coexistence of Ultra-Wideband (UWB) systems operating in the 6 GHz frequency band. The research in this field has mainly focused on the impact of Wi-Fi on UWB communication and the range of their simultaneous operation. Prior studies have highlighted the destructive effects of Wi-Fi on UWB communication in this band, including the false detection of UWB frames while ongoing UWB transmission. However, to our knowledge, no studies have focused exclusively on the impact of Wi-Fi signals solely on UWB receivers’ behavior in isolation. This paper addresses this gap by presenting results obtained under controlled conditions in an anechoic chamber, where external interference is eliminated. Using a setup with only a DW1000 UWB receiver (DWM1001-DEV) and a Wi-Fi 6E access point (Netgear RAXE500) transmitting standard beacon frames and then traffic emulated by iperf tool it was observed that UWB reception can be influenced even without ongoing active UWB transmissions. On top of that, some of these dropped UWB packets (false negatives) showed signs of good CRC checks (false positives). These findings provide a foundation for further exploration, particularly with both legacy and newer UWB chips to confirm or disprove the implications hereby presented.

Klíčová slova

Ultra-Wideband, interference, coexistence, DW1000, reception, spurious signal

Klíčová slova v angličtině

Ultra-Wideband, interference, coexistence, DW1000, reception, spurious signal

Autoři

Radovan Juran, Jari Nurmi, Aleksandr Ometov

Rok RIV

2026

Vydáno

26.06.2026

Nakladatel

VDE

ISBN

978-3-8007-6544-7

Kniha

ICUMT 2024; 16th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops

Strany počet

5

URL

BibTex

@inproceedings{BUT201514,
  author="Radovan {Juráň}",
  title="Coexistence Niche of Ultra-Wideband and Wi-Fi: Suspected Spurious Signal Reception in Channel 5",
  booktitle="ICUMT 2024; 16th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops",
  year="2026",
  pages="5",
  publisher="VDE",
  isbn="978-3-8007-6544-7",
  url="https://ieeexplore.ieee.org/document/11048829"
}