DocumentCode :
1204792
Title :
An Asynchronous Power Aware and Adaptive NoC Based Circuit
Author :
Beigné, Edith ; Clermidy, Fabien ; Lhermet, Hélène ; Miermont, Sylvain ; Thonnart, Yvain ; Tran, Xuan-Tu ; Valentian, Alexandre ; Varreau, Didier ; Vivet, Pascal ; POPON, Xavier ; Lebreton, Hugo
Author_Institution :
CEA-LETI-MINATEC, Grenoble
Volume :
44
Issue :
4
fYear :
2009
fDate :
4/1/2009 12:00:00 AM
Firstpage :
1167
Lastpage :
1177
Abstract :
In complex embedded applications, optimisation and adaptation of both dynamic and leakage power have become an issue at SoC grain. A fully power-aware globally-asynchronous locally-synchronous network-on-chip (NoC) circuit is presented in this paper. Network-on-chip architecture combined with a globally-asynchronous locally-synchronous paradigm is a natural enabler for DVFS mechanisms. The circuit is arranged around an asynchronous network-on-chip providing scalable communication and a 17 Gb/s throughput while automatically reducing its power consumption by activity detection. Both dynamic and static power consumptions are globally reduced using adaptive design techniques applied locally for each synchronous NoC units. No fine control software is required during voltage and frequency scaling. Power control is localized and a minimal latency cost is observed.
Keywords :
adaptive systems; asynchronous circuits; electrical faults; network-on-chip; power aware computing; power consumption; adaptive design techniques; asynchronous power aware; complex embedded applications; leakage power; optimisation; power consumption; power control; power-aware globally-asynchronous locally-synchronous network-on-chip circuit; Circuits; Communication system control; Delay; Dynamic voltage scaling; Energy consumption; Frequency; Network-on-a-chip; Power control; Throughput; Voltage control; DC-DC converters; DVFS; GALS; Network-on-chip; Vdd-hopping; dynamic power; leakage power; super cut-off;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2009.2014206
Filename :
4804962
Link To Document :
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