Academic Press Library in Biomedical Applications of Mobile by Matti Hamalainen, Lorenzo Mucchi

By Matti Hamalainen, Lorenzo Mucchi

Wireless sensor and physique region networks (WSN and WBAN respectively) were visible as a destiny strategy to video display people' psycho-physiological indicators remotely. there are various criteria which may be used for construction WBAN sytems. in spite of the fact that, instant UWB networks in accordance with IEEE 802.15.4a supply some great benefits of a wide frequency diversity and occasional energy spectral density, making it compatible for either WSNs and WBANs used for scientific functions. The expertise has matured sufficiently that it may be used to enhance items for undefined. This ebook offers how the IEEE802.15.4-2011 (former IEEE802.15.4a) can be utilized in instant physique region networks (WBAN) for healthcare and welfare similar functions. It supplies a quick evaluation at the IEEE802.15.4 relatives 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 quarter networks (WBAN) for healthcare and welfare similar applications. 
  • Gives a quick assessment at the IEEE802.15.4 relatives.
  • Gives information of IEEE802.15.4-2011 established solutions. 

Show description

By Matti Hamalainen, Lorenzo Mucchi

Wireless sensor and physique region networks (WSN and WBAN respectively) were visible as a destiny strategy to video display people' psycho-physiological indicators remotely. there are various criteria which may be used for construction WBAN sytems. in spite of the fact that, instant UWB networks in accordance with IEEE 802.15.4a supply some great benefits of a wide frequency diversity and occasional energy spectral density, making it compatible for either WSNs and WBANs used for scientific functions. The expertise has matured sufficiently that it may be used to enhance items for undefined. This ebook offers how the IEEE802.15.4-2011 (former IEEE802.15.4a) can be utilized in instant physique region networks (WBAN) for healthcare and welfare similar functions. It supplies a quick evaluation at the IEEE802.15.4 relatives 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 quarter networks (WBAN) for healthcare and welfare similar applications. 
  • Gives a quick assessment at the IEEE802.15.4 relatives.
  • Gives information of IEEE802.15.4-2011 established solutions. 

Show description

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

Example text

42] Taparugssanagorn A, Rabbachin A, Hämäläinen M, Saloranta J, Iinatti J. A review of channel modelling for wireless body area network in wireless medical communications. In: The eleventh international symposium on wireless personal multimedia communications, Saariselkä, Finland; 2008. [43] Taguchi Y, Kumazawa M, Takizawa K, Ikegami T. Evaluation of wideband channel for bedside UWB radio link. In: The third international symposium on medical information and communication technology, Montreal, Canada; 2009.

4gt-2012, IEEE Computer Society, 252 pp. 4: Low-Rate Wireless Personal Area Networks (LR-WPANs)—Amendment 5: Physical Layer Specifications for Low Energy, Critical Infrastructure Monitoring Networks. 4kt 2 2013, IEEE Computer Society, 149 pp. 32 Wireless UWB Body Area Networks [14] Gutièrrez J, Winkel L, Callaway Jr E, Barrett Jr R. Low-rate wireless personal area networks. 4t Standards Information Network. New York, NY: IEEE Press; 2010, 245 pp. [15] Karapistoli E, Pavlidou F-N, Gragopoulus I, Tsetsinas I.

Figure 14 shows BER performances of different rake receivers as a function on Eb/N0 [65]. 98 MHz. The A-rake receiver is used as a reference to highlight the maximum achievable performance the studied receiver can obtain. Increasing the number of S-rake branches improves the system performance to some point. However, with the increased number of rake branches, the energy contribution of individual paths will decrease, and the performance will saturate due to the characteristics of the channel delay profile.

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