Download e-book for iPad: Academic Press Library in Biomedical Applications of Mobile by Matti Hamalainen, Lorenzo Mucchi
By Matti Hamalainen, Lorenzo Mucchi
Wireless sensor and physique quarter networks (WSN and WBAN respectively) were visible as a destiny strategy to display screen people' psycho-physiological indicators remotely. there are many criteria that may be used for construction WBAN sytems. despite the fact that, instant UWB networks in line with IEEE 802.15.4a provide some great benefits of a wide frequency diversity and coffee strength spectral density, making it appropriate for either WSNs and WBANs used for clinical functions. The know-how has matured sufficiently that it may be used to strengthen items for undefined. This booklet provides how the IEEE802.15.4-2011 (former IEEE802.15.4a) can be utilized in instant physique sector networks (WBAN) for healthcare and welfare comparable functions. It offers a quick evaluate at the IEEE802.15.4 family members after which supplies information of IEEE802.15.4-2011 dependent solutions.
- Presents how the IEEE802.15.4-2011 (former IEEE802.15.4a) can be utilized in instant physique region networks (WBAN) for healthcare and welfare similar applications.
- Gives a brief evaluate at the IEEE802.15.4 kin.
- Gives information of IEEE802.15.4-2011 dependent solutions.
Read Online or Download Academic Press Library in Biomedical Applications of Mobile and Wireless Communications: Wireless UWB Body Area Networks. Using the Ieee802.15.4-2011 PDF
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Additional resources for Academic Press Library in Biomedical Applications of Mobile and Wireless Communications: Wireless UWB Body Area Networks. Using the Ieee802.15.4-2011
In: 34 Wireless UWB Body Area Networks The third international symposium on medical information and communication technology, Montreal, Canada; 2009.  Taparugssanagorn A, Pomalaza-Raez C, Tesi R, Hämäläinen M, Iinatti J. Effect of body motion and the type of antenna on the measured UWB channel characteristics in medical applications of wireless body area networks. In: IEEE international conference on ultra wideband, Vancouver, Canada; 2009.  Taparugssanagorn A, Pomalaza-Ráez C, Tesi R, Isola A, Hämäläinen M, Iinatti J.
66] Niemelä V, Hämäläinen M, Iinatti J, Taparugssanagorn A. P-rake receivers in different measured WBAN hospital channels. In: The fifth international symposium on medical information and communication technology, Montreux, Switzerland; 2011.  Hämäläinen M, Niemelä V, Iinatti J, Kohno R. Performance comparison of the different IR-UWB receivers in wireless body area networks. In: 2011 IEEE international conference on ultra-wideband, Bologna, Italy; 2011.  Niemelä V, Hämäläinen M, Iinatti J, Kohno R.
The modeling in the simulation environment was carried out by the National Institute of Standards and Technology (NIST) in Gaithersburg, MD, USA. The simulated links are modeled using partially the same parameters and antenna positions than the experiment in Refs. [48,57,58] utilized. Due to the calculation demands, the simulated frequency band in Ref.  was narrower than what was used in the measurements. Also the antenna characteristics were different. However, a similar type of behavior in the channel characteristics was found when the radio link cross the implant.