• DocumentCode
    741523
  • Title

    Flexible and Compact AMC Based Antenna for Telemedicine Applications

  • Author

    Raad, H.R. ; Abbosh, Ayman I. ; Al-Rizzo, Hussain M. ; Rucker, D.G.

  • Author_Institution
    Dept. of Eng. Sci., Sonoma State Univ., Rohnert Park, CA, USA
  • Volume
    61
  • Issue
    2
  • fYear
    2013
  • Firstpage
    524
  • Lastpage
    531
  • Abstract
    We present a flexible, compact antenna system intended for telemedicine applications. The design is based on an M-shaped printed monopole antenna operating in the Industrial, Scientific, and Medical (ISM) 2.45 GHz band integrated with a miniaturized slotted Jerusalem Cross (JC) Artificial Magnetic Conductor (AMC) ground plane. The AMC ground plane is utilized to isolate the user´s body from undesired electromagnetic radiation in addition to minimizing the antenna´s impedance mismatch caused by the proximity to human tissues. Specific Absorption Rate (SAR) is analyzed using a numerical human body model (HUGO) to assess the feasibility of the proposed design. The antenna expresses 18% impedance bandwidth; moreover, the inclusion of the AMC ground plane increases the front to back ratio by 8 dB, provides 3.7 dB increase in gain, in addition to 64% reduction in SAR. Experimental and numerical results show that the radiation characteristics, impedance matching, and SAR values of the proposed design are significantly improved compared to conventional monopole and dipole antennas. Furthermore, it offers a compact and flexible solution which makes it a good candidate for the wearable telemedicine application.
  • Keywords
    electromagnetic wave absorption; electromagnetic waves; impedance matching; microstrip antennas; monopole antennas; telemedicine; wearable antennas; HUGO; ISM band; M-shaped printed monopole antenna; antenna impedance mismatch; compact antenna system; electromagnetic radiation; flexible antenna; frequency 2.45 GHz; human tissue; impedance matching; miniaturized slotted Jerusalem cross artificial magnetic conductor ground plane; numerical human body model; specific absorption rate; wearable telemedicine application; Antenna measurements; Antenna radiation patterns; Humans; Impedance; Resonant frequency; Substrates; Artificial Magnetic Conductor (AMC); flexible and wearable antennas; printed monopole; telemedicine;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2012.2223449
  • Filename
    6327607