This article presents a study that quantifies the effect of the human body on the measuring probe of a dosimeter, covering frequencies from 2G to 5G mobile networks. The study analyzed a human body model phantom using CST Microwave Studio, with a perfect plane wave as a far-field electromagnetic source. The electric field in the vicinity of the phantom was analyzed, considering frequency, polarization, and distance. The obtained results show the existence of a statistical rule that corrects the influence of the human body on incident EMF.

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Quantification of the Human Body Effects on Electromagnetic Field Probe at Cellular Mobile Network Frequencies

  • Meryem Bekkouch,
  • Chakib Taybi,
  • Mohammed Anisse Moutaouekkil,
  • Elbekkaye Chaieb,
  • Aboulkacem Karkri,
  • Bachir Elmagroud

摘要

This article presents a study that quantifies the effect of the human body on the measuring probe of a dosimeter, covering frequencies from 2G to 5G mobile networks. The study analyzed a human body model phantom using CST Microwave Studio, with a perfect plane wave as a far-field electromagnetic source. The electric field in the vicinity of the phantom was analyzed, considering frequency, polarization, and distance. The obtained results show the existence of a statistical rule that corrects the influence of the human body on incident EMF.