Workshop on Ultra Wide Band for Body Area Networking (UWBAN)

Research Article

Human Body Effect on the Polarization Properties of the New UWB Dipole Antenna in UWB WBAN Applications

  • @INPROCEEDINGS{10.4108/icst.bodynets.2012.250149,
        author={Tommi Tuovinen and Markus Berg and Kamya Yekeh Yazdandoost and Erkki Salonen and Jari Iinatti},
        title={Human Body Effect on the Polarization Properties of the New UWB Dipole Antenna in UWB WBAN Applications},
        proceedings={Workshop on Ultra Wide Band for Body Area Networking (UWBAN)},
        publisher={ACM},
        proceedings_a={UWBAN},
        year={2012},
        month={11},
        keywords={uwb dipole antenna polarization loss factor current distributions uwb wban systems human body effect},
        doi={10.4108/icst.bodynets.2012.250149}
    }
    
  • Tommi Tuovinen
    Markus Berg
    Kamya Yekeh Yazdandoost
    Erkki Salonen
    Jari Iinatti
    Year: 2012
    Human Body Effect on the Polarization Properties of the New UWB Dipole Antenna in UWB WBAN Applications
    UWBAN
    ACM
    DOI: 10.4108/icst.bodynets.2012.250149
Tommi Tuovinen1,*, Markus Berg1, Kamya Yekeh Yazdandoost1, Erkki Salonen1, Jari Iinatti1
  • 1: Centre for Wireless Communications
*Contact email: tommi.tuovinen@ee.oulu.fi

Abstract

This paper presents a novel planar Ultra Wideband (UWB) dipole antenna for UWB Wireless Body Area Network (WBAN) applications and the investigations of antenna polarization properties. The presented UWB antenna is designed to cover the UWB frequency band of 3.1 – 10.6 GHz while targeted to be exploited in the link between WBAN on-body and off-body communications in UWB WBAN systems. First, the properties of a single antenna are investigated by simulations in terms of current distributions, Axial Ratio (AR), and tilt angle 𝜏 of a polarization ellipse following by the Polarization Loss Factor (PLF) study with two antennas in different use cases. Results are compared with that observed in free space. Based on the simulations and calculations, the body has notable effect on the polarization loss. The shape of current distributions and AR varied significantly in the investigated use positions. The antenna position on the body was further observed to be sensitive to the achieved results. We hope this paper increases general understanding about the effect of body on the antenna properties and further to the channel performance.