DIRAC: a scalable lightweight architecture for high throughput computing

Andrei Tsaregorodtsev, V. Garonne, I. Stokes-Rees
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引用次数: 87

Abstract

DIRAC (distributed infrastructure with remote agent control) has been developed by the CERN LHCb physics experiment to facilitate large scale simulation and user analysis tasks spread across both grid and nongrid computing resources. It consists of a small set of distributed stateless core services, which are centrally managed, and agents which are managed by each computing site. DIRAC utilizes concepts from existing distributed computing models to provide a lightweight, robust, and flexible system. This paper discusses the architecture, performance, and implementation of the DIRAC system which has recently been used for an intensive physics simulation involving more than forty sites, 90 TB of data, and in excess of one thousand 1 GHz processor-years.
DIRAC:用于高吞吐量计算的可伸缩轻量级架构
DIRAC(具有远程代理控制的分布式基础设施)是由CERN LHCb物理实验开发的,用于促进分布在网格和非网格计算资源上的大规模模拟和用户分析任务。它由一组集中管理的分布式无状态核心服务和由每个计算站点管理的代理组成。DIRAC利用现有分布式计算模型中的概念来提供轻量级、健壮和灵活的系统。本文讨论了DIRAC系统的体系结构、性能和实现,该系统最近被用于涉及40多个站点、90tb数据和超过1000 GHz处理器年的密集物理模拟。
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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