The Optimal Processor Cores' Number choice for the Parallel Cluster Multiple Labeling Technique on High-Performance Computing Systems

S. Lapshina
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Abstract

The article is about the research of a optimum number of processor cores for launching the Parallel Cluster Multiple Labeling Technique on modern supercomputer systems installed in the JSCC RAS. This technique may be used in any field as a tool for differentiating large lattice clusters, because it is given input in a format independent of the application. At the JSCC RAS, this tool was used to study the problem of the spread of epidemics, for which an appropriate multiagent model was developed. In the course of imitation experiments, a variant of the Parallel Cluster Multiple Labeling Technique for percolation Hoshen-Kopelman clusters related to the tag linking mechanism, which can also be used in any area as a tool for differentiating large-size lattice clusters, was used to be improved on a multiprocessor system.
高性能计算系统中并行聚类多重标记技术的最优处理器核数选择
本文研究了在JSCC RAS中安装的现代超级计算机系统上启动并行聚类多重标记技术的最佳处理器核数。该技术可用于任何领域,作为区分大型晶格簇的工具,因为它以独立于应用程序的格式提供输入。在JSCC RAS,这个工具被用来研究流行病的传播问题,为此开发了一个适当的多agent模型。在模拟实验过程中,利用与标签连接机制相关的并行聚类多重标记技术的一种变体,在多处理器系统上对渗透Hoshen-Kopelman聚类进行了改进,该技术也可用于任何领域,作为区分大尺寸晶格聚类的工具。
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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