DocumentCode :
3454997
Title :
Optimal adiabatic scaling and the processor-in-memory-and-storage architecture (OAS+PIMS)
Author :
DeBenedictis, Erik P. ; Cook, Jeanine E. ; Hoemmen, Mark F. ; Metodi, Tzevetan S.
Author_Institution :
Center for Comput. Res., Sandia Nat. Labs., Albuquerque, NM, USA
fYear :
2015
fDate :
8-10 July 2015
Firstpage :
69
Lastpage :
74
Abstract :
We discuss a new approach to computing that retains the possibility of exponential growth while making substantial use of the existing technology. The exponential improvement path of Moore´s Law has been the driver behind the computing approach of Turing, von Neumann, and FORTRAN-like languages. Performance growth is slowing at the system level, even though further exponential growth should be possible. We propose two technology shifts as a remedy, the first being the formulation of a scaling rule for scaling into the third dimension. This involves use of circuit-level energy efficiency increases using adiabatic circuits to avoid overheating. However, this scaling rule is incompatible with the von Neumann architecture. The second technology shift is a computer architecture and programming change to an extremely aggressive form of Processor-In-Memory (PIM) architecture, which we call Processor-In-Memory-and-Storage (PIMS). Theoretical analysis shows that the PIMS architecture is compatible with the 3D scaling rule, suggesting both immediate benefit and a long-term improvement path.
Keywords :
integrated memory circuits; logic design; microprocessor chips; FORTRAN-like languages; Moore´s Law; OAS; PIMS; Turing; adiabatic circuits; circuit-level energy efficiency; computer architecture; optimal adiabatic scaling; processor-in-memory-and-storage architecture; von Neumann architecture; Decision support systems; Hafnium compounds; Nanoscale devices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanoscale Architectures (NANOARCH), 2015 IEEE/ACM International Symposium on
Conference_Location :
Boston, MA
Type :
conf
DOI :
10.1109/NANOARCH.2015.7180589
Filename :
7180589
Link To Document :
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