By Peter S. Hall, University of Birmingham, and Yang Hao, Queen Mary College, University of London, Editors
Now in a newly up to date and revised version, this well timed source provide you with entire and present information at the thought, layout, and purposes of instant antennas for on-body digital structures. the second one variation deals readers fresh fabric on advances in actual phantom layout and creation, contemporary advancements in simulation equipment and numerical phantoms, descriptions of tools for simulation of relocating our bodies, and using the physique as a transmission channel. you furthermore mght discover a thoroughly revised bankruptcy on channel characterization and antenna layout at microwave frequencies.
This state-of-the-art quantity brings you the state of the art in present purposes like Bluetooth headsets including specific therapy of strategies, instruments, and demanding situations in constructing on-body antennas for an array of scientific, emergency reaction, legislations enforcement, own leisure, and armed forces purposes at the horizon. The ebook briefs you on strength propagation round and into the physique and the way to estimate functionality of on-body instant hyperlinks, after which dives into the nuts-and-bolts of designing antenna platforms that bring the products. It covers on-body communique channels at microwave frequency bands and at low frequency bands, in addition to extremely wideband platforms for WPANs and WBANs.
You get info on body-centric UWB antennas and channels, in addition to advances in wearable cellular, EBG, and shrewdpermanent textile antennas for mobile and WLAN communications. Chapters on telemedicine purposes, comparable to distant diagnoses, and implantable scientific units conceal an important propagation concerns and different hindrances that must be addressed. Rounding out the insurance is a piece on antenna layout for body-sensor networks and their rising army and house purposes. full of hands-on assistance from famous specialists, this quantity may be necessary on your efforts in designing and bettering body-centric verbal exchange systems.
Contents: creation to Body-Centric instant Communications. Electromagnetic houses and Modeling of the Human physique. On-Body verbal exchange Channels at Microwave Frequency Bands.
Transmission Mechanism of the Wearable units utilizing the Human physique as a Transmission Channel. physique Centric UWB Communications. Wearable Antennas for mobile and WLAN Communications. Body-Sensor Networks for house and army functions. Antennas and Propagation for Telemedicine and Telecare: On-Body platforms. Antennas and Propagation for Telemedicine: Implant platforms. precis.
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Additional info for Antennas and Propagation for Body-Centric Wireless Communications. Second Edition
80, September 2004. html, Oct. 15, 2004.  FCC First Report and Order, Revision of the Part 15 Commission’s Rules Regarding Ultra-Wideband Transmission Systems, ET-Docket 98-153, April 22, 2002. , L. Feijs, W. Chen, and S. B. Oetomo, “Smart Jacket Design for Neonatal Monitoring with Wearable Sensors,” Sixth International Workshop on Wearable and Implantable Body Sensor Networks, June 2009. BSN 2009. , W. G. Whittow, J. Heikkinen, and L. 4 GHz Plaster Antennas for Health Monitoring,” 3rd European Conference on Antennas and Propagation, 2009.
Knight, D. Haniff, and L. Cooper, “Ergonomics of Wearable Computers,” Mobile Networks and Applications, 4, 1999, pp. 15–21. , “BodyTalk and the BodyNet: A Personal Information Infrastructure, Personal Information Architecture,” Note 1, Cambridge, MA: MIT Laboratory for Computer Science, December 1993. , “Personal Area Networks: Near Field Intra-body Communications,” IBM Systems Journal, Cambridge, MA: MIT Media Lab, Vol. 35, No. 3–4, 1996. , T. N. Arvanitis, D. J. Haniff, and R. Buckley, “A Wearable Computer for Paramedics: Studies in Model-based, User-centred and Industrial Design,” M.
Clearly, this bandwidth is much greater than the bandwidth used by any current technology for communication. The large bandwidth of UWB signals provides robustness to jamming and has low probability of detection properties. UWB devices usually require low transmit power due to control over duty cycle, thus allowing longer battery life of handheld equipment. In addition to its high data rate and short-range features (which makes UWB a suitable candidate for the wireless body-centric network), the low power level increases the compatibility of this technology with current exiting wireless systems.
Antennas and Propagation for Body-Centric Wireless Communications. Second Edition by Peter S. Hall, University of Birmingham, and Yang Hao, Queen Mary College, University of London, Editors