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Design And Implementation Of A Workflow-based Resource Broker With Information System On Computational Grids

机译:计算网格上基于工作流的信息系统信息代理的设计与实现

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The grid is a promising infrastructure that can allow scientists and engineers to access resources among geographically distributed environments. Grid computing is a new technology which focuses on aggregating resources (e.g., processor cycles, disk storage, and contents) from a large-scale computing platform. Making grid computing a reality requires a resource broker to manage and monitor available resources. This paper presents a workflow-based resource broker whose main functions are matching available resources with user requests and considering network information statuses during matchmaking in computational grids. The resource broker provides a graphic user interface for accessing available and the appropriate resources via user credentials. This broker uses the Ganglia and NWS tools to monitor resource status and network-related information, respectively. Then we propose a history-based execution time estimation model to predict the execution time of parallel applications, according to previous execution results. The experimental results show that our model can accurately predict the execution time of embarrassingly parallel applications. We also report on using the Globus Toolkit to construct a grid platform called the TIGER project that integrates resources distributed across five universities in Taichung city, Taiwan, where the resource broker was developed.
机译:网格是一个很有前途的基础架构,可以使科学家和工程师在地理分布的环境中访问资源。网格计算是一种新技术,其专注于聚合来自大型计算平台的资源(例如,处理器周期,磁盘存储和内容)。使网格计算成为现实需要资源代理来管理和监视可用资源。本文提出了一种基于工作流的资源代理,其主要功能是将可用资源与用户请求进行匹配,并在计算网格的匹配过程中考虑网络信息状态。资源代理提供图形用户界面,用于通过用户凭据访问可用资源和适当资源。该代理使用Ganglia和NWS工具分别监视资源状态和与网络有关的信息。然后,根据先前的执行结果,提出了一个基于历史的执行时间估计模型,以预测并行应用程序的执行时间。实验结果表明,我们的模型可以准确地预测令人尴尬的并行应用程序的执行时间。我们还报告了使用Globus工具包构建名为TIGER项目的网格平台的过程,该平台集成了分布在台湾台中市的5所大学的资源,该大学是开发资源代理的。

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