Use of Machine Learning for the Estimation of Down- and Up-Link Field Exposure in Multi-Source Indoor WiFi Scenarios.

Machine Learning Neural Network exposure assessment indoor RF exposure

Journal

Bioelectromagnetics
ISSN: 1521-186X
Titre abrégé: Bioelectromagnetics
Pays: United States
ID NLM: 8008281

Informations de publication

Date de publication:
Oct 2021
Historique:
revised: 25 05 2021
received: 13 11 2020
accepted: 25 06 2021
pubmed: 24 7 2021
medline: 26 10 2021
entrez: 23 7 2021
Statut: ppublish

Résumé

A novel Machine Learning (ML) method based on Neural Networks (NN) is proposed to assess radio-frequency (RF) exposure generated by WiFi sources in indoor scenarios. The aim was to build an NN capable of addressing the complexity and variability of real-life exposure setups, including the effects of not only down-link transmission access points (APs) but also up-link transmission by different sources (e.g. laptop, printers, tablets, and smartphones). The NN was fed with easy to be found data, such as the position and type of WiFi sources (APs, clients, and other users) and the position and material characteristics (e.g. penetration loss) of walls. The NN model was assessed using an additional new layout, distinct from that one used to build and optimize the NN coefficients. The NN model achieved a remarkable field prediction accuracy across exposure conditions in both layouts, with a median prediction error of -0.4 to 0.6 dB and a root mean square error of 2.5-5.1 dB, compared with the target electric field estimated by a deterministic indoor network planner. The proposed approach performs well for the different layouts and is thus generally used to assess RF exposure in indoor scenarios. © 2021 The Authors. Bioelectromagnetics published by Wiley Periodicals LLC on behalf of Bioelectromagnetics Society.

Identifiants

pubmed: 34298586
doi: 10.1002/bem.22361
pmc: PMC8519090
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

550-561

Informations de copyright

© 2021 The Authors. Bioelectromagnetics published by Wiley Periodicals LLC on behalf of Bioelectromagnetics Society.

Références

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pubmed: 25793213
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pubmed: 30884917
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pubmed: 32235640
Bioelectromagnetics. 2015 Sep;36(6):451-63
pubmed: 26113174

Auteurs

Gabriella Tognola (G)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

David Plets (D)

Department of Information Technology, Gent University/IMEC, Gent, Belgium.

Emma Chiaramello (E)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

Silvia Gallucci (S)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

Marta Bonato (M)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.
Department of Electronics, Information and Bioengineering (DEIB), Politecnico di Milano, Milan, Italy.

Serena Fiocchi (S)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

Marta Parazzini (M)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

Luc Martens (L)

Department of Information Technology, Gent University/IMEC, Gent, Belgium.

Wout Joseph (W)

Department of Information Technology, Gent University/IMEC, Gent, Belgium.

Paolo Ravazzani (P)

National Research Council, Institute of Electronics, Computer and Telecommunication Engineering (CNR IEIIT), Milan, Italy.

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