Archive/A Survey and Tutorial on 5G Electromagnetic Field (EMF) Measurement
A Survey and Tutorial on 5G Electromagnetic Field (EMF) Measurement
Keze Li, Olaoluwa Popoola, Yusuf Sambo
20. Juli 2026
en

Abstract

5G electromagnetic field (EMF) measurement is more challenging than measurement in previous cellular generations because 5G New Radio uses time-division duplexing, flexible bandwidths, beam sweeping, massive MIMO, and user-specific traffic beams. As a result, the measured synchronisation signal block (SSB) or PBCH-DMRS level may not directly represent the maximum exposure produced by data transmission. This motivates a combined tutorial and structured survey of existing 5G EMF measurement studies and procedures. This paper reviews the literature on 5G EMF measurement by classifying existing methods into frequency-selective measurement, code-selective measurement, actual exposure assessment, maximum-exposure extrapolation, and network-counter-based assessment. Representative field studies, public measurement reports, and network-data-based studies are compared according to their measurement scenarios, exposure objectives, and limitations. The paper further discusses key uncertainty sources, including beam/gain offset, TDD duty cycle, bandwidth extrapolation, traffic variation, spatial sampling, and equipment-related uncertainty. Finally, open challenges related to FR2 millimetre-wave measurements and reconfigurable propagation environments are discussed. By combining tutorial background with a structured survey, this paper clarifies 5G EMF measurement procedures, maximum-exposure extrapolation, uncertainty sources, and FR2 millimetre-wave measurement challenges.

IPC Classification

G06H04

Keywords

surveytutorialelectromagneticfieldmeasurementtelecommorechallengingthanpreviouscellulargenerationsbecauseradiousestime-divisionduplexingflexiblebandwidthsbeamsweepingmassivemimouser-specific
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