科技报告详细信息
Toward exascale computing through neuromorphic approaches.
James, Conrad D.
Sandia National Laboratories
关键词: Decision Making;    Nervous System;    Nerve Cells;    Simulation;    99 General And Miscellaneous//Mathematics, Computing, And Information Science;   
DOI  :  10.2172/1007316
RP-ID  :  SAND2010-6312
RP-ID  :  AC04-94AL85000
RP-ID  :  1007316
美国|英语
来源: UNT Digital Library
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【 摘 要 】
While individual neurons function at relatively low firing rates, naturally-occurring nervous systems not only surpass manmade systems in computing power, but accomplish this feat using relatively little energy. It is asserted that the next major breakthrough in computing power will be achieved through application of neuromorphic approaches that mimic the mechanisms by which neural systems integrate and store massive quantities of data for real-time decision making. The proposed LDRD provides a conceptual foundation for SNL to make unique advances toward exascale computing. First, a team consisting of experts from the HPC, MESA, cognitive and biological sciences and nanotechnology domains will be coordinated to conduct an exercise with the outcome being a concept for applying neuromorphic computing to achieve exascale computing. It is anticipated that this concept will involve innovative extension and integration of SNL capabilities in MicroFab, material sciences, high-performance computing, and modeling and simulation of neural processes/systems.
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