<p><p>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
Ultra Low Power Transceiver for Wireless Body Area Networks
β Scribed by Jens Masuch, Manuel Delgado-Restituto (auth.)
- Publisher
- Springer International Publishing
- Year
- 2013
- Tongue
- English
- Leaves
- 125
- Series
- Analog Circuits and Signal Processing
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Wireless Body Area Networks (WBANs) are expected to promote new applications for the ambulatory health monitoring of chronic patients and elderly population, aiming to improve their quality of life and independence. These networks are composed by wireless sensor nodes (WSNs) used for measuring physiological variables (e.g., glucose level in blood or body temperature) or controlling therapeutic devices (e.g., implanted insulin pumps). These nodes should exhibit a high degree of energy autonomy in order to extend their battery lifetime or even make the node supply to rely on harvesting techniques. Typically, the power budget of WSNs is dominated by the wireless link and, hence, many efforts have been directed during the last years toward the implementation of power efficient transceivers.
Because of the short range (typically no more than a few meters) and low data rate (typically in between 10 kb/s and 1 Mb/s), simple communication protocols can be employed. One of these protocols, specifically tailored for WBAN applications, is the Bluetooth low energy (BLE) standard.
This book describes the challenges and solutions for the design of ultra-low power transceivers for WBANs applications and presents the implementation details of a BLE transceiver prototype. Coverage includes not only the main concepts and architectures for achieving low power consumption, but also the details of the circuit design and its implementation in a standard CMOS technology.
β¦ Table of Contents
Front Matter....Pages i-viii
Introduction....Pages 1-5
Review of the State of the Art....Pages 7-12
Low Power Strategies....Pages 13-21
Implementation of the Low Power Transceiver....Pages 23-85
Co-integration of RF Energy Harvesting....Pages 87-103
Conclusions....Pages 105-108
Back Matter....Pages 109-122
β¦ Subjects
Circuits and Systems;Electronics and Microelectronics, Instrumentation;Electronic Circuits and Devices
π SIMILAR VOLUMES
<p><P><EM>Ultra-Low Power Wireless Technologies for Sensor Networks</EM> is written for academic and professional researchers designing communication systems for pervasive and low power applications. The main emphasis of the book is on design techniques for low power, highly integrated transceivers.
<p>Low-Power CMOS Design for Wireless Transceivers provides a comprehensive treatment of the challenges in low-power RF CMOS design. The author addresses trade-offs and techniques that improve the performance from the component level to the architectural level. <BR>Low-Power CMOS Design for Wireless
<p>Micro-power Integrated Circuits for Neural Interfaces Jeremy Holleman Fan Zhang Brian Otis This book describes ultra low-power, integrated circuits and systems designed for the emerging field of neural signal recording and processing, and wireless communication. Since neural interfaces are typica