探索之门:科学长尾的网络基础设施

R. Moore, C. Baru, Diane A. Baxter, Geoffrey Fox, A. Majumdar, P. Papadopoulos, W. Pfeiffer, R. Sinkovits, Shawn M. Strande, M. Tatineni, R. Wagner, Nancy Wilkins-Diehr, M. Norman
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引用次数: 44

摘要

nsf资助的计算中心主要致力于为学术研究人员提供高性能的计算资源,以满足最苛刻的计算要求。但是现在,计算科学是如此普及,有必要为更多的研究人员和学科提供基础设施,而不仅仅是那些在HPC金字塔顶端的人。在这里,我们描述了SDSC的彗星系统,该系统计划于2015年1月投入生产,旨在满足更大、更广泛的科学社区的需求——“科学的长尾”。Comet的峰值性能为每秒2千万亿次,主要使用英特尔的下一代至强处理器。它将包括一些大内存和gpu加速的节点、节点本地闪存、7pb的性能存储和6pb的持久存储。这些特性,加上高性能虚拟化的可用性,将使用户能够在单个集成资源上运行复杂的异构工作负载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gateways to Discovery: Cyberinfrastructure for the Long Tail of Science
NSF-funded computing centers have primarily focused on delivering high-performance computing resources to academic researchers with the most computationally demanding applications. But now that computational science is so pervasive, there is a need for infrastructure that can serve more researchers and disciplines than just those at the peak of the HPC pyramid. Here we describe SDSC's Comet system, which is scheduled for production in January 2015 and was designed to address the needs of a much larger and more expansive science community-- the "long tail of science". Comet will have a peak performance of 2 petaflop/s, mostly delivered using Intel's next generation Xeon processor. It will include some large-memory and GPU-accelerated nodes, node-local flash memory, 7 PB of Performance Storage, and 6 PB of Durable Storage. These features, together with the availability of high performance virtualization, will enable users to run complex, heterogeneous workloads on a single integrated resource.
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