Electric field distribution and SAR inside a human eye exposed to VR glasses

0202 electrical engineering, electronic engineering, information engineering 02 engineering and technology
DOI: 10.1049/iet-map.2018.5227 Publication Date: 2018-08-11T02:21:59Z
ABSTRACT
The aim of this study is a numerical analysis the electric field and specific absorption rate (SAR) distribution within realistic 3D‐human eye model exposed to electromagnetic (EM) wave virtual reality (VR) glasses at frequency third generation, long‐term evolution‐4G, latest generation mobile networks – 5G. To obtain values SAR, solution equations EM waves propagation has been used. A new head human created. obtained results are shown for different biological tissues radiation from VR frequencies. maximum energy will be discussed following frequencies: 900 MHz, 2.6 GHz, 28 GHz. strength in tissue frequencies GHz MHz 94.43 137.3 V/m, respectively (higher than referent values), whereas amounts 8.62 V/m (lower limits). SAR peaks do not overcome prescribed safety values.
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