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  4. An Ultra-Low Power NVM-Based Multi-Core Architecture for Embedded Bio Signal Processing
 
conference paper not in proceedings

An Ultra-Low Power NVM-Based Multi-Core Architecture for Embedded Bio Signal Processing

Braojos Lopez, Ruben  
•
Atienza, David  
2016
ICT-Energy conference 2016

Healthcare delivery is evolving towards new Wireless Body Sensor Nodes (WBSN), which are miniaturized devices able to acquire, process and transmit subjects’ bio-signals in real time within a tiny energy budget. Recent efforts on AD converters and transmission schemes have enabled a major power consumption reduction of these components, thus leaving the embedded processing stage as the dominant power-hungry component. In this context, new multi-core architectures designed with smaller CMOS devices and aggressive voltage scaling greatly improve the energy efficiency of WBSNs, but originate reliability operation concerns. In this work we present a novel WBSN architecture equipped with a completely redesigned memory subsystem (including a low-voltage low-latency non-volatile partition), which operates in combination with an advanced code synchronization management to reduce the platform ower consumption by up to 82%.

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ICT_Energy_2016_final.pdf

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Postprint

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http://purl.org/coar/version/c_ab4af688f83e57aa

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openaccess

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608.78 KB

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Adobe PDF

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60e6f218f0fe64665cad65b7c2eb7ccf

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