Agent-based modeling supporting the migration of registry systems to grid based architectures.

Martin E Cryer, Lewis Frey
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Abstract

With the increasing age and cost of operation of the existing NCI SEER platform core technologies, such essential resources in the fight against cancer as these will eventually have to be migrated to Grid based systems. In order to model this migration, a simulation is proposed based upon an agent modeling technology. This modeling technique allows for simulation of complex and distributed services provided by a large scale Grid computing platform such as the caBIG(™) project's caGRID. In order to investigate such a migration to a Grid based platform technology, this paper proposes using agent-based modeling simulations to predict the performance of current and Grid configurations of the NCI SEER system integrated with the existing translational opportunities afforded by caGRID. The model illustrates how the use of Grid technology can potentially improve system response time as systems under test are scaled. In modeling SEER nodes accessing multiple registry silos, we show that the performance of SEER applications re-implemented in a Grid native manner exhibits a nearly constant user response time with increasing numbers of distributed registry silos, compared with the current application architecture which exhibits a linear increase in response time for increasing numbers of silos.

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基于代理的建模支持注册系统向基于网格的架构迁移。
随着现有 NCI SEER 平台核心技术的老化和运行成本的增加,这些抗击癌症的重要资源最终将不得不迁移到基于网格的系统中。为了模拟这种迁移,我们提出了一种基于代理建模技术的模拟方法。这种建模技术可以模拟大规模网格计算平台(如 caBIG(™)项目的 caGRID)提供的复杂分布式服务。为了研究这种向基于网格的平台技术的迁移,本文建议使用基于代理的建模模拟来预测 NCI SEER 系统当前和网格配置的性能,并将其与 caGRID 提供的现有转化机会相结合。该模型说明了随着测试系统的扩展,网格技术的使用如何潜在地改善系统响应时间。在对访问多个注册中心的 SEER 节点进行建模时,我们发现以网格原生方式重新实现的 SEER 应用程序的性能表现为,随着分布式注册中心数量的增加,用户响应时间几乎保持不变,而当前的应用程序架构则表现为,随着注册中心数量的增加,响应时间呈线性增长。
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