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Category I: Crossing the Divide Between Today's Practice and Tomorrow's Science

Category I: Crossing the Divide Between Today's Practice and Tomorrow's Science
第一类:跨越今天的实践和明天的科学之间的鸿沟
批准号:
2005572
负责人:
William Gropp
金额:
$1000.0万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-10-01 至 2026-09-30

项目摘要

项目成果

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中文摘要
翻译
科学应用程序和用户界面的进步使先进研究计算系统的可获得性和可获得性大众化,使更多的研究人员能够寻求更复杂问题的答案。此外,计算和数据密集型研究技术的进步被用于越来越多的领域,既作为主要的研究方法,也作为传统建模和模拟方法的补充。支撑这些进步的是,许多研究应用程序正在加速从传统处理器转向现代计算机图形硬件中可用的高度并行的浮点处理器。位于伊利诺伊大学厄巴纳-香槟分校的国家超级计算应用中心(NCSA)将部署和运行Delta,这是一种先进的计算和数据资源,将捕捉技术和实践变化的本质,作为高级研究计算的全球领导者,NCSA致力于促进人类理解。Delta将通过部署现代接口,如科学网关和其他基于网络的接口,提高先进计算资源的生产率和可用性,这些接口既可以改善可用性,又可以实时向研究人员提供结果。跨国家网络基础设施生态系统的联邦将支持作为多站点工作流组件的集成,其中包括园区、国家和商业云资源。NCSA将与科学网关社区研究所(SGCI)合作,实施科学门户基础设施,使广泛的研究人员社区能够利用该系统的高级计算和数据分析能力。将取得重大进展,以评估和促进残障人士使用Delta,并在更广泛的研究、计算和数据生态系统中传播这些进展。NCSA将通过采用GPU计算,在识别最具应用加速潜力的应用程序和研究团队方面发挥积极作用,从而极大地扩大基于GPU计算作为一种不断增长的标准的采用,并减少各种研究工作的解决方案时间。Delta系统将是NSF资助的高级计算资源生态系统中的一个独特成员,因为它平衡地混合了大量的GPU能力和更传统的CPU处理能力。利用下一代处理器架构和NVIDIA图形处理器,Delta在发布时将包括国家科学基金会产品组合中性能最高的GPU计算资源及其800多个图形处理器。Delta的计算元素将采用先进的网络互连,为每个计算节点提供至少100 Gb/秒的带宽,用于应用程序通信和访问创新存储环境。近10 PB的高性能存储子系统将加速数据密集型研究,该存储子系统包含3 PB的基于闪存的轻松POSIX文件系统,NCSA将使用该系统来展示现代文件系统在提升数据密集型和高性能计算应用程序性能方面的有效性。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Advances in scientific applications and user interfaces have democratized the availability and accessibility of advanced research computing systems, allowing a broader range of researchers to pursue answers to ever more complex problems. Further, advances in computational and data-intensive research techniques are employed in a growing number of fields, both as primary methods of investigation and as complements to traditional modeling and simulation methods. Underpinning these advances is an accelerating shift in many research applications away from traditional processors to the vastly parallel floating-point processors available in modern computer graphics hardware. The National Center for Supercomputing Applications (NCSA) at the University of Illinois at Urbana-Champaign will deploy and operate Delta, an advanced computing and data resource that will capture the essence of change in technology and practice that NCSA, as a global leader in advanced research computing, pursues in its mission to advance human understanding.Delta will advance the productivity and usability of advanced computing resources by deploying modern interfaces, such as science gateways and other web-based interfaces that will both improve usability and provide results to researchers in real-time. Federation across the national cyberinfrastructure ecosystem will enable integration as a component of multi-site workflows that include campus, national, and commercial cloud resources. NCSA will partner with the Science Gateways Community Institute (SGCI) to implement the science gateway infrastructure that will enable broad communities of researchers to take advantage of the advanced computing and data analytics capabilities of the system. Significant development will take place to evaluate and advance the accessibility of Delta by individuals with disabilities and to disseminate these advances throughout the broader research computing and data ecosystem. NCSA will take an active role in identifying applications and research teams that have the greatest potential for application acceleration through the adoption of GPU computing, thus greatly expanding the adoption of GPU-based computing as a growing norm and reducing time-to-solution for a broad range of research endeavors.The Delta system will be a unique addition to the NSF-funded ecosystem of advanced computing resources due to its balanced mixture of a substantial GPU capability alongside more traditional CPU processing capabilities. Taking advantage of next-generation processor architectures and NVIDIA graphics processors, Delta will include what will be, at its launch, the most performant GPU computing resource in the National Science Foundation portfolio with its 800+ graphics processors.The compute elements of Delta will employ an advanced network interconnect, delivering at least 100 gigabits per second of bandwidth to each compute node for application communications and access to an innovative storage environment. Data-intensive research will be accelerated by a nearly 10 petabyte high-performance storage subsystem, which incorporates three petabytes of flash-based, relaxed-POSIX file system which NCSA will use to demonstrate the effectiveness of modern file systems in advancing the performance of data-intensive and high-performance computing applications.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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会议论文
Category I: Bridging the Gap Between AI/ML Computing Demands and Today's Capabilities
MRI: Development of an Instrument for Deep Learning Research
BD Hubs: MIDWEST: SEEDCorn: Sustainable Enabling Environment for Data Collaboration
CSR: Medium: Collaborative Research: Decoupled Execution Paradigm for Data-Intensive High-End Computing
国内基金
海外基金
Wall crossing现象和内禀Higgs态
  • 批准号:
    11305125
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    22.0万元
  • 批准年份:
    2013
  • 负责人:
    王兆龙
  • 依托单位: