A framework for resource allocation in grid computing

D. Menascé, E. Casalicchio
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引用次数: 109

Abstract

Grid computing is the future computing paradigm for enterprise applications. An enterprise application running on a grid is composed of a set of SLA-constrained sub-tasks demanding different types of services and resources such as processors, data storage, service providers, and network links. The paper formalizes the resource allocation problem for SLA-constrained grid applications. The paper considers a very general case in which applications are decomposed into tasks that exhibit precedence relationships. The problem consists in finding the optimal resource allocation that minimizes total cost while preserving execution time service level agreements (SLAs). The paper provides a framework for building heuristic solutions for this NP-hard problem, presents an example of such a heuristic, and provides a numerical example.
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网格计算中的资源分配框架
网格计算是企业应用程序的未来计算范式。运行在网格上的企业应用程序由一组受sla约束的子任务组成,这些子任务需要不同类型的服务和资源,如处理器、数据存储、服务提供者和网络链接。本文形式化了sla约束下网格应用的资源分配问题。本文考虑了一种非常普遍的情况,其中应用程序被分解为具有优先关系的任务。问题在于找到最小化总成本的最佳资源分配,同时保留执行时间服务水平协议(sla)。本文提供了一个构造NP-hard问题的启发式解的框架,给出了一个启发式解的例子,并给出了一个数值例子。
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