Title :
Fading characterization for Context Aware Body Area Networks (CABAN) in interactive smart environments
Author :
Heaney, Sean F. ; Scanlon, William G. ; Garcia-Palacios, E. ; Cotton, Simon L.
Author_Institution :
Inst. of Electron., Commun. & Inf. Technol. (ECIT), Queen´´s Univ. of Belfast, Belfast, UK
Abstract :
Body Area Networks are unique in that the large-scale mobility of users allows the network itself to travel across a diverse range of operating domains. This presents the possibility of creating interactive smart environments where Context Aware Body Area Networks can sense and co-operate with nearby wireless networks. This paper describes an investigation of the physical layer characteristics for a user within a `smart´ office environment. A series of carefully controlled measurements of the mesh interconnectivity both within and between an ambulatory body area network and a stationary desk-based network were performed using 2.45 GHz nodes. The measurement system was capable of simultaneously characterising both off-body and on-body channels. The results show that model selection for fading characterization was often arbitrary due to the divergence of the empirical data to that of the fading distributions. It has also been identified that not all the reciprocal links follow the same distribution, a concern for physical layer protocol design.
Keywords :
body area networks; fading channels; protocols; wireless mesh networks; ambulatory body area network; context aware body area network; fading characterization; frequency 2.45 GHz; interactive smart environment; measurement system; mesh interconnectivity; model selection; off-body channel; on-body channel; physical layer protocol design; stationary desk-based network; wireless network; Antennas; Body area networks; Fading; Mobile communication; Nakagami distribution; Rician channels;
Conference_Titel :
Antennas and Propagation Conference (LAPC), 2010 Loughborough
Conference_Location :
Loughborough
Print_ISBN :
978-1-4244-7304-5
DOI :
10.1109/LAPC.2010.5666195