• Title of article

    Millimeter Wave Energy Absorption by Human Tissues: Evaluation of Tissue Penetration

  • Author/Authors

    Biowei ، Godday Electrical and Electronics Engineering Department - Faculty of engineering - Niger-Delta University , Adekola ، Sulaiman Adeniyi Department of Electrical and Electronic Engineering - Federal University Otuoke , Amusa ، Kamoli Akinwale Electrical and Electronics Engineering Department - College of Engineering - Federal University of Agriculture

  • From page
    78
  • To page
    91
  • Abstract
    Presented in this paper is an evaluation of human tissue penetration by millimeter wave (mmW) energy, particularly at 30, 35, 40 and 45 GHz. Numerical simulations show that the penetration depths in the tissue are (0.1000, 0.0937, 0.08869 and 0.08882) mm at the aforementioned frequency, respectively. It is also demonstrated that all mmW at those frequencies attenuate to zero at the epidermis which is the layer adjacent to the skin surface, without getting into the dermis which is the next layer. Crucially, these discoveries present fresh, previously unmentioned data within the current research literature. Furthermore, at the lower frequency of 24 GHz, computer simulations presented show that the propagating wave penetrates deeper (depth of 0.12 mm) and attenuates to zero at the dermis. This shows that the depth of penetration increases further at lower frequencies which strongly conforms to the principles of physical reasoning, thereby bolstering the reliability of the findings presented in this paper. The results collectively indicate that the absorption of mmW into the human tissue have limited significance when assessing compliance with electromagnetic field standards at mmW frequencies. It is reinforced in this paper why the human skin reduces the harmful effects of ultra-violet radiation.  To lend credence to our formulation, certain aspects of the results obtained in this investigation when compared with similar results in the literature, show good agreements.
  • Keywords
    Human tissue , mmWave , penetration depth , damping oscillations , SAR
  • Journal title
    Iranian Journal of Electrical and Electronic Engineering(IJEEE)
  • Journal title
    Iranian Journal of Electrical and Electronic Engineering(IJEEE)
  • Record number

    2762178