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

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

摘要

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