Cost-driven scheduling of grid workflows using Partial Critical Paths

S. Abrishami, Mahmoud Naghibzadeh, D. Epema
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引用次数: 257

Abstract

Recently, utility grids have emerged as a new model of service provisioning in heterogeneous distributed systems. In this model, users negotiate with providers on their required Quality of Service and on the corresponding price to reach a Service Level Agreement. One of the most challenging problems in utility grids is workflow scheduling, i.e., the problem of satisfying users' QoS as well as minimizing the cost of workflow execution. In this paper, we propose a new QoS-based workflow scheduling algorithm based on a novel concept called Partial Critical Path. This algorithm recursively schedules the critical path ending at a recently scheduled node. The proposed algorithm tries to minimize the cost of workflow execution while meeting a user-defined deadline. The simulation results show that the performance of our algorithm is very promising.
基于部分关键路径的网格工作流成本驱动调度
近年来,公用电网作为一种新的异构分布式系统服务提供模式而出现。在该模型中,用户与提供商就其所需的服务质量和相应的价格进行协商,以达成服务水平协议。工作流调度是电网中最具挑战性的问题之一,即在满足用户QoS的同时最小化工作流执行成本的问题。本文提出了一种新的基于qos的工作流调度算法,该算法基于部分关键路径的新概念。该算法递归调度结束于最近调度节点的关键路径。提出的算法试图在满足用户定义的截止日期的同时最小化工作流执行的成本。仿真结果表明,该算法具有良好的性能。
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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