Title :
Measurement-based on-body path loss modelling for UWB WBAN communications
Author :
Kumpuniemi, Timo ; Tuovinen, Tommi ; Hamalainen, Matti ; Yazdandoost, Kamya Yekeh ; Vuohtoniemi, Risto ; Iinatti, Jari
Author_Institution :
Centre for Wireless Commun., Univ. of Oulu, Oulu, Finland
Abstract :
This paper presents a path loss model for an ultra wideband (UWB) wireless body area network (WBAN) on-body communication. The modelling is based on the static frequency domain measurements in an anechoic chamber. The studies are done for several on-body radio channels and with two different UWB antennas (dipole and double loop) for the frequency range of 2-8 GHz. A linear least squares (LS) polynomial data fitting is applied to the post processed measurement data resulting parameters for a path loss model. It is shown that the loop antenna outperforms the dipole antenna in respect to the slope of the attenuation. However, the path loss at the reference distance is higher for the loop. It is also shown that the signal propagation delay in the antenna structures causes error in distance measurement and unless the error is compensated significant differences in the parameters of the path loss model may occur in a WBAN case. Finally, it is observed that by using energy detection notable benefit can be obtained if all propagation paths are considered instead of the first arriving path.
Keywords :
UHF antennas; anechoic chambers (electromagnetic); body area networks; dipole antennas; least squares approximations; microwave antennas; polynomials; ultra wideband antennas; ultra wideband communication; UWB WBAN communications; UWB antennas; WBAN case; anechoic chamber; antenna outperforms; antenna structures; dipole antenna; dipole loop; double loop; energy detection notable benefit; frequency 2 GHz to 8 GHz; linear least squares polynomial data fitting; measurement-based on-body path loss modelling; on-body communication; on-body radio channels; path loss model; propagation paths; reference distance; signal propagation delay; static frequency domain measurements; ultra wideband; wireless body area network; Antenna measurements; Dipole antennas; Frequency measurement; Loss measurement; Wireless communication; body area network (BAN); path loss; ultra wideband (UWB);
Conference_Titel :
Medical Information and Communication Technology (ISMICT), 2013 7th International Symposium on
Conference_Location :
Tokyo
Print_ISBN :
978-1-4673-5770-8
Electronic_ISBN :
2326-828X
DOI :
10.1109/ISMICT.2013.6521735