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E2CDA: Type I: EXtremely Energy Efficient Collective ELectronics (EXCEL)

E2CDA: Type I: EXtremely Energy Efficient Collective ELectronics (EXCEL)
E2CDA:I 型:极其节能的集体电子 (EXCEL)
批准号:
1640081
负责人:
Suman Datta
金额:
$264.62万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-01 至 2022-08-31

项目摘要

项目成果

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中文摘要
翻译
随着数十亿智能和连接设备的出现,“数据泛滥”已成为现实,仅去年一年就产生了超过8zb的数据。这项多学科研究工作的主要重点是开发一种名为“极节能集体电子”(EXCEL)的新计算范式,使硬件加速数据分析能够从未标记和非结构化数据中提取信息。这项研究有望揭示利用耦合动力系统以高效节能的方式解决计算难题的根本新方法。随着新材料和设备的创新,芯片级动态系统实现,架构变化和关键基准测试,EXCEL将为新的非诺伊曼计算范式奠定基础,以实现计算能效的数量级提高。外展活动的重点是教育下一代学生适应即将到来的信息处理系统的演变和革命。该研究项目的结构受益于与工业界的紧密合作,这将促进未来的技术转让。参与项目的pi致力于为本科生和研究生开发新兴纳米技术、非常规计算、机器学习和计算医学领域的课程模块。EXCEL项目通过利用新设备中的突发现象和耦合系统的动态,以集体、合作和可扩展的方式执行优化、学习和推理任务,为一种完全不同的节能信息处理方法奠定了基础。EXCEL的智力基础在于利用嵌入在耦合网络(振荡和尖峰)的时空动态中的本地信息内容,以大规模并行的方式执行计算。集体计算范式是对依赖于批处理、离散时间、迭代更新(缺乏时间局部性)和共享状态(缺乏空间局部性)的传统冯-诺伊曼计算模型的及时背离。EXCEL专注于开发模拟计算的复杂性理论基础。这包括探索连续和离散优化问题,以及在线学习的随机机器。EXCEL研究人员将积极进行物理硬件演示,并量化其在解决高性能数据中心、实时网络物理系统和计算医学中不断扩展的计算难题方面比布尔计算机的优势。
英文摘要
With billions of smart and connected devices, "data deluge" is a reality with more than eight zettabytes of data generated in last year alone. The primary focus of this multi-disciplinary research effort is to develop a new paradigm of computing titled Extremely energy efficient Collective Electronics (EXCEL) to enable hardware accelerated data-analytics that can extract information from unlabeled and unstructured data. This research is expected to uncover fundamentally new ways of harnessing coupled dynamical systems for solving computationally hard problems in an energy efficient way. With innovations in novel materials and devices, chip-scale dynamical system implementation, architectural changes and critical benchmarking, EXCEL will lay the foundation for a new non von-Neumann computing paradigm to achieve orders of magnitude improvement in computational energy efficiency. The outreach activities are prioritized around educating future generations of students to adapt to the forthcoming evolution and revolution in information processing systems. The research project is structured to benefit from strong engagement with industry, which will facilitate technology transfer in the future. The participating PIs are committed to developing course modules for both undergraduate and graduate students in the areas of emerging nanotechnologies, unconventional computing, machine learning and computational medicine.The EXCEL project lays the foundation for a radically different approach to energy efficient information processing by leveraging emergent phenomena in novel devices and dynamics of coupled systems to execute optimization, learning and inference tasks in a collective, cooperative and scalable way. The intellectual foundation of EXCEL rests on the utilization of local information content embedded in the spatio-temporal dynamics of coupled networks (oscillatory and spiking) to perform computation in a massively parallel way. The collective computing paradigm is a timely departure from the traditional model of von-Neumann computing which relies on batch, discrete time, iterative updates (lacking temporal locality) and shared states (lacking spatial locality). EXCEL focuses on developing a complexity theoretic foundation in analog computing. This includes exploration of both continuous and discrete optimization problems as well as stochastic machines for on-line learning. The EXCEL researchers will actively pursue physical hardware demonstration and quantify their advantages over Boolean computers in solving computationally hard problems that are finding ever expanding applications in high-performance data centers, real-time cyber-physical systems and computational medicine.
期刊论文(7)
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会议论文
DOI: 10.1109/tvlsi.2017.2754192
发表时间: 2016-06
期刊: IEEE Transactions on Very Large Scale Integration (VLSI) Systems
影响因子: 2.8
作者: [Xunzhao Yin;B. Sedighi;M. Varga;M. Ercsey-Ravasz;Z. Toroczkai;X. Hu]
通讯作者: Xunzhao Yin;B. Sedighi;M. Varga;M. Ercsey-Ravasz;Z. Toroczkai;X. Hu
Bounded Continuous-Time Satisfiability Solver
有界连续时间可满足性求解器
DOI: --
发表时间: 2019
期刊: International Symposium on Nonlinear Theory and its Applications (NOLTA2019
影响因子: --
作者: [Yamashita, H., Suzuki, H., Toroczkai, Z., Aihara, K.]
通讯作者: Aihara, K.
DOI: 10.1038/s41467-019-11198-6
发表时间: 2019-07-24
期刊: NATURE COMMUNICATIONS
影响因子: 16.6
作者: [Dutta, Sourav, Parihar, Abhinav, Datta, Suman]
通讯作者: Datta, Suman
An Analog SAT Solver Based on a Deterministic Dynamical System
基于确定性动力系统的模拟 SAT 求解器
DOI: --
发表时间: 2017
期刊: International Conference on Computer-Aided Design
影响因子: --
作者: [Yin, Xunzhao, Hu, Xiaobo Sharon]
通讯作者: Hu, Xiaobo Sharon
Collaborative Research: DMREF: Accelerated Design, Discovery, and Deployment of Electronic Phase Transitions (ADEPT)
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    2324175
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  • 资助金额:
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  • 财政年份:
    2023
  • 负责人:
    Suman Datta
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Collaborative: Mixed Anion and Cation Based Transistor Architecture for Ultra-Low Power Complementary Logic Applications
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