K computer: 8.162 PetaFLOPS massively parallel scalar supercomputer built with over 548k cores

Hiroyuki Miyazaki, Yoshihiro Kusano, H. Okano, Tatsumi Nakada, Ken Seki, T. Shimizu, Naoki Shinjo, F. Shoji, Atsuya Uno, M. Kurokawa
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引用次数: 24

Abstract

Many high-performance CPUs employ a multicore architecture with a moderate clock frequency and wide instruction issue, including SIMD extensions, to achieve high performance while retaining a practical power consumption. As demand for supercomputer performance grows faster than the rate that improvements are made to CPU performance, the total number of cores of high-end supercomputers has increased tremendously. Efficient handling of large numbers of cores is a key aspect in the design of supercomputers. Building a supercomputer with lower power consumption and significant reliability is also important from the viewpoints of cost and availability.
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K计算机:拥有超过548k核的8.162 PetaFLOPS大规模并行标量超级计算机
许多高性能cpu采用具有中等时钟频率和宽指令问题的多核架构,包括SIMD扩展,以在保持实际功耗的同时实现高性能。由于对超级计算机性能的需求增长速度快于CPU性能的改进速度,高端超级计算机的核心总数急剧增加。高效处理大量核是超级计算机设计的一个关键方面。从成本和可用性的角度来看,构建功耗更低、可靠性更高的超级计算机也很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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