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An Economy Driven Resource Management Architecture for Global Computational Power Grids

机译:适用于全球计算电网的经济驱动型资源管理架构

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The growing computational power requirements of grand challenge applications has promoted the need for linking high-performance computational resources distributed across multiple organisations. This is fueled by the availability of the Internet as a ubiquitous commodity communication media, low cost high-performance machines such as clusters across multiple organisations, and the rise of scientific problems of multi-organisational interest. The availability of expensive, special class of scientific instruments or devices and data sources in few organisations has increased the interest in offering a remote access to these resources. The recent popularity of coupling (local and remote) computational resources, special class of scientific instruments, and data sources across the Internet for solving problems has led to the emergence of a new platform called "Computational Grid". This paper identifies the issues in resource management and scheduling driven by computational economy in the emerging grid computing context. They also apply to clusters of clusters environment (known as federated clusters or hyperclusters) formed by coupling multiple (geographically distributed) clusters located in the same or different organisations. We discuss our current work on the Nimrod/G resource broker, whose scheduling mechanism is driven by a user supplied application deadline and a resource access budget. However, current Grid access frameworks do not provide the dynamic resource trading services that are required to facilitate flexible application scheduling. In order to overcome this limitation, we have proposed an infrastructure called GRid Architecture for Computational Economy (GRACE). In this paper we present the motivations for grid computing, resource management architecture, Nimrod/G resource broker, computational economy, and GRACE infrastructure and its APIs along with future work.
机译:大型挑战应用程序对计算能力的要求不断提高,因此需要链接分布在多个组织中的高性能计算资源。互联网作为一种普遍存在的商品通信介质,低成本高性能的机器(例如跨多个组织的集群)以及越来越多的组织关注的科学问题的出现,助长了这种增长。很少有组织提供昂贵,特殊类的科学仪器或设备以及数据源,这增加了人们对提供对这些资源的远程访问的兴趣。耦合(本地和远程)计算资源,特殊类型的科学仪器以及整个Internet上用于解决问题的数据源的最近流行,导致了一个称为“计算网格”的新平台的出现。本文确定了在新兴的网格计算环境中由计算经济驱动的资源管理和调度中的问题。它们还适用于通过耦合位于相同或不同组织中的多个(地理分布)集群而形成的集群环境集群(称为联合集群或超集群)。我们讨论了有关Nimrod / G资源代理的当前工作,该代理的调度机制由用户提供的应用程序截止日期和资源访问预算驱动。但是,当前的Grid访问框架不提供促进灵活的应用程序调度所需的动态资源交易服务。为了克服此限制,我们提出了一种称为GRid的计算经济架构(GRACE)。在本文中,我们介绍了网格计算,资源管理体系结构,Nimrod / G资源代理,计算经济,GRACE基础架构及其API的动机以及未来的工作。

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