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conference paper

Ultra-Low Power Design of Wearable Cardiac Monitoring Systems

Braojos Lopez, Ruben  
•
Mamaghanian, Hossein  
•
Vallejos, Rincon  
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2014
Proceedings of the IEEE/ACM 2014 Design Automation Conference (DAC)
IEEE/ACM 2014 Design Automation Conference (DAC)

This paper presents the system-level architecture of novel ultra-low power wireless body sensor nodes (WBSNs) for real-time cardiac monitoring and analysis, and discusses the main design challenges of this new generation of medical devices. In particular, it highlights first the unsustainable energy cost incurred by the straightforward wireless streaming of raw data to external analysis servers. Then, it introduces the need for new cross-layered design methods (beyond hardware and software boundaries) to enhance the autonomy of WBSNs for ambulatory monitoring. In fact, by embedding more onboard intelligence and exploiting electrocardiogram (ECG) specific knowledge, it is possible to perform real-time compressive sensing, filtering, delineation and classification of heartbeats, while dramatically extending the battery lifetime of cardiac monitoring systems. The paper concludes by showing the results of this new approach to design ultra-low power wearable WBSNs in a real-life platform commercialized by SmartCardia. This wearable system allows a wide range of applications, including multi-lead ECG arrhythmia detection and autonomous sleep monitoring for critical scenarios, such as monitoring of the sleep state of airline pilots

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Type
conference paper
DOI
10.1145/2593069.2596691
Author(s)
Braojos Lopez, Ruben  
Mamaghanian, Hossein  
Vallejos, Rincon  
Javier, Francisco  
Dias Junior, Alair  
Ansaloni, Giovanni  
Murali, Srinivasan  
Atienza Alonso, David  
Date Issued

2014

Publisher

IEEE/ACM Press

Publisher place

New York

Published in
Proceedings of the IEEE/ACM 2014 Design Automation Conference (DAC)
ISBN of the book

978-1-4503-2730-5/14/06

Start page

140

End page

145

Subjects

Embedded systems

•

cardiac monitoring

•

ultra-low power

•

system-level design

•

ECG

•

smart embedded devices

•

MPSoC

•

Wearable

•

bio-medical signal processing

•

WBSN

•

wireless body sensor nodes

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ESL  
Event nameEvent placeEvent date
IEEE/ACM 2014 Design Automation Conference (DAC)

San Francisco, CA, USA

June 1-5, 2014

Available on Infoscience
April 2, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/102341
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