A Comparative Study of In Situ Methodologies for Assessment of RF EMF Exposure From a 5G FR2 Base Station

In this work, in situ measurements of the radio frequency electromagnetic field exposure have been conducted for an indoor massive MIMO 5G base station operating at 26-28 GHz. Measurements were performed at six different positions (at distances between 9.94 and 14.32 m from the base station), of whi...

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Veröffentlicht in:IEEE access 2024, Vol.12, p.132552-132564
Hauptverfasser: Goegebeur, Samuel, Deprez, Kenneth, Colombi, Davide, Bischoff, Jens Eilers, Di Paola, Carla, Stroobandt, Bram, Verloock, Leen, Aerts, Sam, Tornevik, Christer, Joseph, Wout
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Sprache:eng
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Zusammenfassung:In this work, in situ measurements of the radio frequency electromagnetic field exposure have been conducted for an indoor massive MIMO 5G base station operating at 26-28 GHz. Measurements were performed at six different positions (at distances between 9.94 and 14.32 m from the base station), of which four were in line-of-sight and two were in non-line-of-sight. A comparison was performed between the measurements conducted with an omnidirectional probe and with a horn antenna, for scenarios with and without a user equipment used to actively create an antenna traffic beam from the base station towards the measurement location. A maximum exposure of 171.9 mW/m2 was measured at a distance of 9.94 m from the base station. This is below 2% of the ICNIRP reference level. Moreover, the feasibility to measure the power per resource element of the Synchronization Signal Block - which can be used to extrapolate the maximum exposure level - with a conventional spectrum analyzer was shown by comparison with a network decoder.
ISSN:2169-3536
2169-3536
DOI:10.1109/ACCESS.2024.3424262