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Characterization of Time-Variant Wireless Channels in Railway Communication Scenarios (4.684Mb)
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Izenburua
Characterization of Time-Variant Wireless Channels in Railway Communication Scenarios
Egilea
Zelenbaba, StefanORCID
Mozo, ErislandyORCID
Wirth, Fabian
Hladik, Reinhard
Alonso Gómez, ArrateORCID
Bernadó, LauraORCID
Schiefer, Martin
Zemen, Thomas
Ikerketa taldea
Teoría de la Señal y Comunicaciones
Beste erakundeak
https://ror.org/04knbh022
Bertsioa
Bertsio argitaratua
Dokumentu-mota
Kongresu-ekarpena
Bahituraren amaiera data
2139-01-01
Hizkuntza
Ingelesa
Eskubideak
© 2019 IEEE
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/14516
Argitaratzailearen bertsioa
https://doi.org/10.1109/5GWF.2019.8911706
Non argitaratua
2nd IEEE 5G World Forum  2019 2nd (5GWF), Dresden, Alemania
Argitaratzailea
IEEE
Gako-hitzak
Directive antennas
Delays
Doppler effect
Frequency measurement ... [+]
Directive antennas
Delays
Doppler effect
Frequency measurement
Wireless communication
Safety
Bandwidth
railway
5G
wireless
URLLC
train-to-infrastructure [-]
Gaia (UNESCO Tesauroa)
Komunikazioaren teknologia
Telekomunikazioak
Laburpena
We present results from a train-to-infrastructure (T2I) and train-to-train (T2T) measurement campaign where we perform single-input-single-output channel sounding with a 150 MHz bandwidth, allowing us ... [+]
We present results from a train-to-infrastructure (T2I) and train-to-train (T2T) measurement campaign where we perform single-input-single-output channel sounding with a 150 MHz bandwidth, allowing us to resolve multi-path components with high precision. We analyze the measurements done for both T2I and T2T communication links, with trains going at speeds of maximum 20 km/h~~ 5.56 m/s. Using low velocities allows us to run two trains behind each other on the same rail track with very short distances (0 < d < 200 m). The analyzed data combined with GPS and video recordings serves for describing the geometry of the environment and developing a physical geometry-based stochastic channel model that enables virtual channel emulation for scenarios with trains moving at high velocities (0 < v < 300 km/h~~ 83.33 m/s), but short distances. Characterizing the channel through empirically obtained data in such scenarios is still impossible in practice due to safety issues. Nevertheless, it presents a key step towards ultra-reliable low-latency link research for 5G use cases in the high-speed railway domain. We show that neighboring traffic and surrounding infrastructure has a big impact on the delay spread and that at extremely close distances, path loss variation depends on used antenna polarization. [-]
Programa
H2020
Zenbakia
737422
Laguntzaren URIa
https://doi.org/10.3030/737422
Proiektua
Electronic Component Systems for European Leadership (ECSEL)
Bildumak
  • Kongresuetara ekarpenak - Ingeniaritza [561]

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