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Wake-up Receiver Based Ultra-Low-Power WBAN

Author: Maarten Lont; Dusan Milosevic; Arthur van Roermund
Publisher: Cham : Springer, 2014.
Series: Analog Circuits and Signal Processing
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book presents the cross-layer design and optimization of wake-up receivers for wireless body area networks (WBAN), with an emphasis on low-power circuit design. This includes the analysis of medium access control (MAC) protocols, mixer-first receiver design, and implications of receiver impairments on wideband frequency-shift-keying (FSK) receivers. Readers will learn how the overall power consumption is  Read more...
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Details

Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Maarten Lont; Dusan Milosevic; Arthur van Roermund
ISBN: 9783319064505 3319064509
OCLC Number: 882944271
Description: Online-Ressource (XV, 150 Seiten 85 Illustrationen, 32 Illustrationen in color, online resource).
Series Title: Analog Circuits and Signal Processing
Responsibility: by Maarten Lont, Dusan Milosevic, Arthur van Roermund.

Abstract:

This book presents the cross-layer design and optimization of wake-up receivers for wireless body area networks (WBAN), with an emphasis on low-power circuit design. This includes the analysis of medium access control (MAC) protocols, mixer-first receiver design, and implications of receiver impairments on wideband frequency-shift-keying (FSK) receivers. Readers will learn how the overall power consumption is reduced by exploiting the characteristics of body area networks. Theoretical models presented are validated with two different receiver implementations, in 90nm and 40nm CMOS technology." rovides an overview of wireless body area network design from the network layer to the circuit implementation, and an overview of the cross-layer design trade-offs; " iscusses design at both the network or MAC-layer and circuit-level, with an emphasis on circuit design; " overs the design of low-power frequency shift keying (FSK) wake-up-receivers; " alidates theory presented with two different receiver implementations, in 90nm and 40nm CMOS technology.

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