| Literature DB >> 33794922 |
Maarten Velghe1, Sam Aerts2, Luc Martens2, Wout Joseph2, Arno Thielens2.
Abstract
BACKGROUND: The general population is exposed to Radio-Frequency Electromagnetic Fields (RF-EMFs) used by telecommunication networks. Previous studies developed methods to assess this exposure. These methods will be inadequate to accurately assess exposure in 5G technologies or other wireless technologies using adaptive antennas. This is due to the fact that 5G NR (new radio) base stations will focus actively on connected users, resulting in a high spatio-temporal variations in the RF-EMFs. This increases the measurement uncertainty in personal measurements of RF-EMF exposure. Furthermore, a user's exposure from base stations will be dependent on the amount of data usage, adding a new component to the auto-induced exposure, which is often omitted in current studies. GOALS: The objective of this paper is to develop a general study protocol for future personal RF-EMF exposure research adapted to 5G technologies. This protocol will include the assessment of auto-induced exposure of both a user's own devices and the networks' base stations.Entities:
Keywords: 5G; Personal measurements; RF-EMF exposure
Year: 2021 PMID: 33794922 PMCID: PMC8017841 DOI: 10.1186/s12940-021-00719-w
Source DB: PubMed Journal: Environ Health ISSN: 1476-069X Impact factor: 5.984
Fig. 1Flowchart of the measurement procedure for survey studies (left) and microenvironmental studies (right)
Positions of the UE near the body in each case of the amount of data transmission in UL and DL. Some typical activities are given
| Data transmission | UE locations relative to body | ||
|---|---|---|---|
| Against ear | In front | In pocket | |
| No connection | n/a | n/a | n/a |
| (min UL, min DL) | Reading | No activity | |
| (min UL, max DL) | Video streaming (DL) | Big file download | |
| (max UL, min DL) | Video streaming (UL) | Big file upload | |
| (max UL, max DL) | Video call | Operation requiring low latency and Cloud Computing | |
Comparison between protocols for personal RF-EMF exposure measurement studies.
| Röösli et al. [ | This paper | |
|---|---|---|
| Measurement device(s) | PEM | UE with sensor (+PEM) |
| Sample rate | 3 s | 0.25 ms |
| Calibration | Device only | Device on body |
| Level of analysis | Microenvironments | Activities |
| Technologies | 2G – 4G | 2G – 5G |
| e-BC exposure | Reduced measurement uncertainty | Reduced measurement uncertainty |
| e-DL exposure (in 5G) | High measurement uncertainty | Reduced measurement uncertainty |
| e-UL exposure | High measurement uncertainty | High measurement uncertainty |
| a-DL exposure (only 5G) | High measurement uncertainty | Reduced measurement uncertainty |
| a-UL exposure | High measurement uncertainty | Reduced measurement uncertainty |