Electromagnetics of body area networks : (Record no. 74459)

000 -LEADER
fixed length control field 13324nam a2201573 i 4500
001 - CONTROL NUMBER
control field 7572255
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20220712205933.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 161010s2008 njua ob 001 eng d
019 ## -
-- 958097001
-- 958392843
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
ISBN 9781119082910
-- electronic bk.
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- print
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic bk.
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic bk.
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic bk.
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- print
082 04 - CLASSIFICATION NUMBER
Call Number 621.382
245 00 - TITLE STATEMENT
Title Electromagnetics of body area networks :
Sub Title antennas, propagation, and RF systems /
300 ## - PHYSICAL DESCRIPTION
Number of Pages 1 PDF (554 pages).
505 0# - FORMATTED CONTENTS NOTE
Remark 2 -- List of Contributors xv -- Preface xix -- Acknowledgments xxiii -- 1 Textile Antennas for Body Area Networks: Design Strategies and Evaluation Methods 1 /Ping Jack Soh and Guy A. E. Vandenbosch -- 1.1 Introduction, 1 -- 1.2 Textile Materials and Antenna Fabrication Procedure, 2 -- 1.3 Design Strategies and Evaluation Methods, 5 -- 1.4 Conclusion, 20 -- 2 Metamaterial-Enabled and Microwave Circuit Integrated Wearable Antennas for Off-Body Communications 27 /Zhi Hao Jiang, Taiwei Yue, and Douglas H. Werner -- 2.1 Introduction, 27 -- 2.2 A Metasurface-Enabled Compact Wearable Antenna, 29 -- 2.3 Microwave Circuit Integrated Wearable Filtering Antennas, 37 -- 2.4 Investigation of Performance for Wearable Applications, 47 -- 2.5 Conclusion, 55 -- 3 AMC-Backed Flexible Near-Endfire Wearable Antennas for On-Body Communications 61 /Kush Agarwal and Yong-Xin Guo -- 3.1 Introduction, 61 -- 3.2 AMC-Backed Near-Endfire Antenna for On-Body Communications, 64 -- 3.3 Fabricating the Antenna Configurations on Flexible Latex Substrate, 68 -- 3.4 Investigation of Antenna Performances in Free Space, 69 -- 3.5 Investigation of Antenna Performances on Voxel Model, 72 -- 3.6 Antenna Performance Under Bending Deformation, 76 -- 3.7 Measurement Results, 79 -- 3.8 Conclusion, 84 -- 4 Novel Antenna Designs and Characterization Methodologies for Medical Diagnostics and Sensing 87 /Harish Rajagopalan and Yahya Rahmat-Samii -- 4.1 Introduction, 87 -- 4.2 Ingestible Antenna Design at WMTS Band: Wireless Capsule Endoscopy Diagnostics, 97 -- 4.3 Ingestible Antenna Design at ISM Band: Medical Compliance Sensing, 110 -- 4.4 On-Body Antenna at UHF Band: RFID Tag for Patient Monitoring, 117 -- 4.5 Future Outlook, 126 -- 4.6 Conclusion, 129 -- 5 Basic Performance Characteristics of Wearable Antennas Over a Wide Frequency Range 135 /Koichi Ito -- 5.1 Introduction, 135 -- 5.2 Frequency Dependence of Communication Channels Between Wearable Antennas Mounted on the Human Body, 136 -- 5.3 Influences of Surrounding Environment and Body Movement, 142.
505 8# - FORMATTED CONTENTS NOTE
Remark 2 5.4 Practical Applications, 149 -- 5.5 Conclusion, 156 -- 6 Implanted Antennas and RF Transmission in Through-Body Communications 159 /Terence Shie Ping See, Zhi Ning Chen, and Xianming Qing -- 6.1 Introduction, 159 -- 6.2 Antennas for Wireless Capsule Endoscopy, 162 -- 6.3 Antennas in Wireless Implantable Neuroprobe Microsystem for Motor Prosthesis, 187 -- 6.4 Conclusion, 201 -- 7 Antennas, Phantoms, and Body-Centric Propagation at Millimeter-Waves 205 /Nacer Chahat, Adrian Tang, Anda Guraliuc, Maxim Zhadobov, Ronan Sauleau, and Guido Valerio -- 7.1 Introduction, 205 -- 7.2 Human Body Modeling and Exposure Guidelines, 207 -- 7.3 Antennas For Off-Body Communications at Millimeter-Waves, 222 -- 7.4 Antenna and Propagation for On-Body Propagation, 231 -- 7.5 Conclusion, 248 -- 8 Wearable Active Antenna Modules for Energy-Efficient Reliable Off-Body Communication Systems 261 /Patrick Van Torre, Luigi Vallozzi, and Hendrik Rogier -- 8.1 Introduction, 261 -- 8.2 Diversity and MIMO Techniques for Off-Body Wireless Channels, 264 -- 8.3 Active Wearable Antennas: Efficient Design and Implementation, 269 -- 8.4 Body-Centric MIMO Channels, 273 -- 8.5 Applications, 295 -- 8.6 Conclusions, 311 -- 9 More Than Wearable: Epidermal Antennas for Tracking and Sensing 319 /Sara Amendola, Cecilia Occhiuzzi, and Gaetano Marrocco -- 9.1 Introduction, 319 -- 9.2 RFID Technology, 321 -- 9.3 Radiation Performance of Epidermal Antennas, 322 -- 9.4 Performance of Epidermal RFID Dual-Loop Tag, 328 -- 9.5 Special (Functionalized) Epidermal Membranes, 335 -- 9.6 Sensing Applications, 341 -- 9.7 Conclusion, 347 -- 10 Inkjet-Printed Smart Skins and Wirelessly-Powered Sensors for Wearable Applications 351 /John Kimionis and Manos (Emmanouil) M. Tentzeris -- 10.1 Introduction, 351 -- 10.2 Multilayer Inkjet Printing - Conductors and Dielectrics, 352 -- 10.3 Multilayer Inkjet Printing - Antenna Examples, 354 -- 10.4 Inkjet-Printed Sensors, 356 -- 10.5 Conductive Polymer-Based Sensors, 357 -- 10.6 Carbon Nanomaterial-Based Sensors, 358.
505 8# - FORMATTED CONTENTS NOTE
Remark 2 10.7 Inkjet-Printed Microfluidics, 360 -- 10.8 Wireless Energy Harvesting for Wearables, 364 -- 10.9 Microwave Receiver Design, 364 -- 10.10 Circuit Fabrication with Inkjet-Printed Masking, 365 -- 10.11 Input Power Estimation and RF-DC Conversion Circuit Design, 366 -- 10.12 RF-DC Conversion Efficiency Measurement and Prototype Operation Tests, 368 -- 10.13 Conclusion, 371 -- 11 Circuits and Systems for Wireless Body Area Network 375 /Joonsung Bae and Hoi-Jun Yoo -- 11.1 Introduction, 375 -- 11.2 MBAN System Concept, 377 -- 11.3 Energy-Efficient MBAN Hub Design, 381 -- 11.4 Compact Sensor Node Designs, 389 -- 11.5 System Implementation, 400 -- 11.6 Conclusion, 401 -- 12 Ultra Low-Power MEMS-Based Radios for WBAN 405 /Raghavasimhan Thirunarayanan, Aravind Prasad Heragu, and Christian Enz -- 12.1 Introduction to Body Area Networks, 405 -- 12.2 WBAN Requirements, 406 -- 12.3 Limitations of Conventional Radios for WBAN Systems, 407 -- 12.4 Comparison Metrics for ULP Radios, 408 -- 12.5 MEMS Resonators - A Solution to Bulky Crystals, 411 -- 12.5.1 BAW Resonators, 411 -- 12.6 FBAR-Based Radios, 413 -- 12.7 FBAR-Based TX Architecture, 413 -- 12.8 Transmitter Measurement Results, 418 -- 12.9 Summary of the FBAR-Based TX, 424 -- 12.10 Receiver Architecture, 424 -- 12.11 Summary of the FBAR-Based RX, 443 -- 12.12 Conclusion, 443 -- 13 Exploring Physiological Features from On-Body Radio Channels 447 /Max O. Munoz and Yang Hao -- 13.1 Introduction, 447 -- 13.2 Physiological Information Parameters, 449 -- 13.3 Methods for Non-Invasive Physiological Detection, 449 -- 13.4 Discussion and Conclusion, 466 -- 14 Power/Data Telemetry Techniques for Implants or Wearable Systems 471 /Anil K. RamRakhyani and Gianluca Lazzi -- 14.1 Introduction, 471 -- 14.2 Powering of Implants and Wearable Systems, 472 -- 14.3 Data Communication to Implants and Wearable Systems, 481 -- 14.4 Discussion, 484 -- 14.5 Design Examples, 485 -- 14.6 Conclusion, 488 -- References, 488 -- Index 493.
520 ## - SUMMARY, ETC.
Summary, etc Focuses on research and development of electromagnetic considerations for body-area networks including antennas and propagation, as well as relevant RF radio circuit and sensor technologies The book is a comprehensive treatment of the field, covering fundamental theoretical principles and new technological advancements, state-of-the-art device design, and reviewing examples encompassing a wide range of related sub-areas. In particular, the first area focuses on the recent development of novel wearable and implantable antenna concepts and designs including metamaterial-based wearable antennas, microwave circuit integrated wearable filtering antennas, and textile and/or fabric material enabled wearable and implantable antennas. The second set of topics covers advanced wireless propagation and the associated statistical models for on-body, in-body, and off-body modes. Other sub-areas such as efficient numerical human body modeling techniques, artificial phantom synthesis and fabrication, as well as low-power RF integrated circuits and related sensor technology are also discussed. These topics have been carefully selected for their transformational impact on the next generation of body-area network systems and beyond. Each chapter is written by an internationally recognized author or group of authors covering the latest research results. In addition, this book: . Covers the research and development of electromagnetic considerations for body-area networks including antennas and propagation, as well as relevant RF radio circuit and sensor technologies. Discusses the emerging flexible materials and fabrication methodologies and their role in enabling new technologies for wearable and implantable devices. Introduces advanced wireless propagation and the associated statistical models for on-body, in-body, and off-body modes Electromagnetics of Body Area Networks: Antennas, Propagation, and RF Systems is written for graduate students, researchers, and industrial engineers in wireless communications, RF/antenna engineering, healthcare, and medical electronics.
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Body area networks (Electronics)
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Electromagnetic theory.
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Electromagnetism.
650 #7 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Body area networks (Electronics)
650 #7 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Electromagnetic theory.
650 #7 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Electromagnetism.
700 1# - AUTHOR 2
Author 2 Werner, Douglas H.,
700 1# - AUTHOR 2
Author 2 Jiang, Zhi Hao.
700 1# - AUTHOR 2
Author 2 Werner, Douglas H.,
700 1# - AUTHOR 2
Author 2 Jiang, Zhi Hao.
856 42 - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier https://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=7572255
856 42 - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier https://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=7572255
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type eBooks
264 #1 -
-- Piscataway, New Jersey :
-- John Wiley & Sons,
-- [2016]
264 #2 -
-- [Piscataqay, New Jersey] :
-- IEEE Xplore,
-- [2016]
336 ## -
-- text
-- rdacontent
337 ## -
-- electronic
-- isbdmedia
338 ## -
-- online resource
-- rdacarrier
588 ## -
-- Description based on PDF viewed 10/10/2016.
695 ## -
-- Slot antennas
695 ## -
-- Standards
695 ## -
-- Substrates
695 ## -
-- Surface impedance
695 ## -
-- Telemetry
695 ## -
-- Temperature sensors
695 ## -
-- Textiles
695 ## -
-- Time-frequency analysis
695 ## -
-- Transceivers
695 ## -
-- Transmitting antennas
695 ## -
-- Wearable computers
695 ## -
-- Wireless communication
695 ## -
-- Wireless sensor networks
695 ## -
-- Antenna measurements
695 ## -
-- Antenna radiation patterns
695 ## -
-- Antennas
695 ## -
-- Band-pass filters
695 ## -
-- Batteries
695 ## -
-- Biological system modeling
695 ## -
-- Biomedical monitoring
695 ## -
-- Body area networks
695 ## -
-- Calibration
695 ## -
-- Coils
695 ## -
-- Conductivity
695 ## -
-- Copper
695 ## -
-- Crystals
695 ## -
-- Dielectrics
695 ## -
-- Dipole antennas
695 ## -
-- Electromagnetics
695 ## -
-- Endoscopes
695 ## -
-- Epidermis
695 ## -
-- Fabrication
695 ## -
-- Fading channels
695 ## -
-- Fluctuations
695 ## -
-- Frequency control
695 ## -
-- Frequency dependence
695 ## -
-- Gain
695 ## -
-- Heart rate variability
695 ## -
-- Implants
695 ## -
-- Indium tin oxide
695 ## -
-- Ink
695 ## -
-- Liquids
695 ## -
-- Loaded antennas
695 ## -
-- Medical diagnostic imaging
695 ## -
-- Medical services
695 ## -
-- Microstrip antennas
695 ## -
-- Microwave antennas
695 ## -
-- Millimeter wave communication
695 ## -
-- Monitoring
695 ## -
-- Nonhomogeneous media
695 ## -
-- Permittivity
695 ## -
-- Phantoms
695 ## -
-- Phase locked loops
695 ## -
-- Physiology
695 ## -
-- Printing
695 ## -
-- Radio frequency
695 ## -
-- Radiofrequency identification
695 ## -
-- Reflector antennas
695 ## -
-- Sensor systems
695 ## -
-- Sensors
695 ## -
-- Shadow mapping
695 ## -
-- Slot antennas
695 ## -
-- Standards
695 ## -
-- Substrates
695 ## -
-- Surface impedance
695 ## -
-- Telemetry
695 ## -
-- Temperature sensors
695 ## -
-- Textiles
695 ## -
-- Time-frequency analysis
695 ## -
-- Transceivers
695 ## -
-- Transmitting antennas
695 ## -
-- Wearable computers
695 ## -
-- Wireless communication
695 ## -
-- Wireless sensor networks

No items available.