Ultra Wideband Wireless Body Area Networks (PDF)
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This book explores the design of ultra wideband (UWB) technology for wireless body-area networks (WBAN). The authors describe a novel implementation of WBAN sensor nodes that use UWB for data transmission and narrow band for data reception, enabling low power sensor nodes, with high data rate capability. The discussion also includes power efficient, medium access control (MAC) protocol design for UWB based WBAN applications and the authors present a MAC protocol in which a guaranteed delivery mechanism is utilized to transfer data with high priority. Readers will also benefit from this book's feasibility analysis of the UWB technology for human implant applications through the study of electromagnetic and thermal power absorption of human tissue that is exposed to UWB signals.
. Describes hardware platform development for IR-UWB based WBAN communication;
. Discusses power efficient medium access control (MAC) protocol design for IR-UWB based WBAN applications;
. Includes feasibility analysis of the UWB technology for human implant applications through study of electromagnetic and thermal effects caused by UWB signals;
. Includes implementation and experimental evaluation of a UWB MAC protocol in hardware platforms.
Mehmet Rasit Yuce received the M.S. degree in Electrical and Computer Engineering from the University of Florida, Gainesville, Florida in 2001, and the Ph.D. degree in Electrical and Computer Engineering from North Carolina State University (NCSU), Raleigh, NC in December 2004. He was a post-doctoral researcher in the Electrical Engineering Department at the University of California at Santa Cruz in 2005. He was a Senior Lecturer in the School of Electrical Engineering and Computer Science, University of Newcastle, New South Wales, Australia until Jul 2011. In July 2011, he joined the Department of Electrical and Computer Systems Engineering, Monash University, Melbourne Australia. His research interests include wireless implantable telemetry, wireless body area network (WBAN), bio-sensors, MEMs sensors, integrated circuit technology dealing with digital, analog and radio frequency circuit designs for wireless, biomedical, and RF applications. Dr. Yuce has published more than 100 technical articles in the above areas and received a NASA group achievement award in 2007 for developing an SOI transceiver. He received a research excellence award in the Faculty of Engineering and Built Environment, University of Newcastle in 2010. He is a senior member of IEEE. He is an associate editor for IEEE Sensors Journal.
Jean-Michel Redouté received the degree of M. S. in electronics at the University College of Antwerp, in 1998, and the degree of M. Eng. in electrical
- Autoren: Kasun Maduranga Silva Thotahewa , Jean-Michel Redouté , Mehmet Rasit Yuce
- 2014, 2014, 173 Seiten, Englisch
- Verlag: Springer-Verlag GmbH
- ISBN-10: 331905287X
- ISBN-13: 9783319052878
- Erscheinungsdatum: 17.04.2014
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- Größe: 8.26 MB
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